SlideShare a Scribd company logo
1 of 7
Download to read offline
International Journal of Electronics and Communication Engineering Research and Development
(IJECERD), ISSN 2248-9525(Print), ISSN- 2248-9533 (Online) Volume 4, Number 2, April-June (2014)
13
AN APPROACH TO DESIGN A RECTANGULAR MICROSTRIP
PATCH ANTENNA IN S BAND BY TLM MODEL
[1]
DevarajaNaik R L, [2]
MurthiMahadevaNaik.G, [3]
Dr. Naveen Kumar S K
[1][2]
Dept. of Electronics and Communication. M C E, Malnad College of Engineering, Hassan
[3]
Dept. of Electronics, Mangalore University
ABSTRACT
In this paper we have designed a rectangular microstrip antenna in ‘S’ band
transmission line model. The S band frequency ranges from 2 GHz to 4GHz for wireless
application. The desired frequency is chosen to be 2.4 GHz at which the patch antenna is
designed to improve the bandwidth. After calculating the various parameters such as width,
effective dielectric constant, effective length and actual length. The antenna impedance is
matched to 50 ohm using inset feed. The results are obtained (Input Impedance, reflection
coefficient, SWR and bandwidth) by using MATLAB software.
Keywords: Rectangular Microstrip Antenna, Impedance, Feeding Point Reflection
Co-Efficient, Return Loss, VSWR.
I. INTRODUCTION
In recent years the area of microstrip antenna has seen many inventive works and is one
of the most dynamic fields in wireless communication field. For simplify, analysis and
performance prediction of the patch is generally square, rectangular, circular, triangular, and
elliptical or some other common shapes. Among these the rectangular and circular patches are
probably the most extensively used patches. To analyse a rectangular microstrip antenna using
transmission line and cavity model become simpler. In this paper a rectangular
microstrippatchantenna using transmission line model in S band is designed. The details of the
design are given in the following sections.
Microstrip patch antennas possess a very high antenna quality factor (Q) which
represents the losses associated with the antenna where a large Q would lead to a narrow
bandwidth and low efficiency. The factor Q can be reduced by increasing the thickness of the
dielectric substrate but as the thickness will increase there will be a simultaneous increase in the
IJECERD
© PRJ
PUBLICATION
International Journal of Electronics and Communication
Engineering Research and Development
(IJECERD)
ISSN 2248– 9525 (Print)
ISSN 2248 –9533 (Online)
Volume 4, Number 2, April- June (2014), pp. 13-19
© PRJ Publication, http://www.prjpublication.com/IJECERD.asp
International Journal of Electronics and Communication Engineering Research and Development
(IJECERD), ISSN 2248-9525(Print), ISSN- 2248-9533 (Online) Volume 4, Number 2, April-June (2014)
14
fraction of the total power delivered by the source into a surface wave which can be effectively
considered as an unwanted power loss since it is ultimately scattered at the dielectric bends and
causes degradation of the antenna characteristics. Other problems such as lower gain and lower
power handling capacity can be overcome by using an array configuration for the elements
which is a collection of homogeneous antennas oriented similarly to get greater directivity and
gain in a desired direction. The inset-fed microstrip antenna provides impedance control with a
planar feed configuration.
Fig 1: Structure of a Microstrip Patch Antenna
II. THEORETICAL CONSIDERATIONS
A. Parameters of Rectangular microstrip Antenna (RMSA)
The parameters of RMSA such as width, effective dielectric constant, effective length,
length extension and actual length are shown in equation 1,2,3,4, and 5 respectively.
The width of the Microstrip patch antenna is given Bahl and Bhartia [10] as:
(1)
The expression for εreffis given by Balanis [2] as:
(2)
Where, - Effective dielectric constant substrate
- Dielectric constant of substrate
h - Height of dielectric substrate
W - Width of the patch
(3)
International Journal of Electronics and Communication Engineering Research and Development
(IJECERD), ISSN 2248-9525(Print), ISSN- 2248-9533 (Online) Volume 4, Number 2, April-June (2014)
15
Actual length of the patch,
(4)
The effective length of patch is,
(5)
B. Resonant Input Resistance
The equivalent of Rectangular MicrostripAntenna(RMSA) is represented as a parallel
combination of conductance G and Reactance B as shown in Fig 2. The values of G and B given
below which are based on transmission linemodel expansion.
The equivalent admittance of slot #1
Y1=G1+jB1
Since slot #2 is identical to slot #1, its equivalent admittance is
Y1=Y2, G1=G2 B1=B2
Fig 2: equivalent circuit transmission-line model for RMPA
Conductance at slot #1 is written as
G1= (6)
The total admittance at slot #1 (input admittance) is obtained by transferring the
admittance of slot #2 from the output terminals to input terminals using the admittance
transformation equation of transmission lines .the transformed admittance of slot #2 becomes
G1- jB1
Therefore the total resonant input admittance is real and is given by
Yin= y1+ =2G1
International Journal of Electronics and Communication Engineering Research and Development
(IJECERD), ISSN 2248-9525(Print), ISSN- 2248-9533 (Online) Volume 4, Number 2, April-June (2014)
16
slots. This can be accomplished by Since the total input admittance is real, the resonant input
impedance is also real.
Zin= = Rin = (7)
The resonant input resistance, as given by (7), does not take into account mutual effects
between the
Rin(y=0)= (8)
The mutual conductance is defined, in terms of the far-zone fields, as
G12= (9)
WhereJ0 is the Bessel function of the first kind of order zero.
The input resistanc e for the inset feed is approximated
from [8], [16]
)
= Rin(y=0) ) (10)
Wherey0 is the feeding point.
The minimum value (zero) occurs at the centre of the patch (y0 = L/2)where the voltage
is zero and the current is maximum. Now using equation (10), one can calculate the total input
impedance of the proposed antenna configuration,from this various antenna parameterscan be
calculated.
Hence the input impedance of the circuit is Zin = Rin(y=y0). The reflection coefficient
( Ґ ) can be calculated by
Ґ= (11)
Where Zin is input impedance of RMSA,Zs is impedance of the insertfeed(50 ).
The VSWR is basically a measure of the impedance mismatch between the feeding system and
the antenna. The higher the VSWR, the greater is the mismatch.
(12)
The minimum possible value of VSWR is unity for perfect match.
The return losses (RL), indicates the amount of power that is transferred to the load and the part
of power reflected back. The RL is
RL= - 20log│ Ґ│(dB) (13)
International Journal of Electronics and Communication Engineering Research and Development
(IJECERD), ISSN 2248-9525(Print), ISSN- 2248-9533 (Online) Volume 4, Number 2, April-June (2014)
17
To obtain perfect matching between the feeding system and the antenna, Γ = 0 is
required and therefore, from equation (13), RL = infinity. Similarly at Γ = 1, RL = 0 dB.
III. DESIGN CONSIDERATION
The parameters of Rectangular Microstrip Antenna are computed using Mat Lab as
tabulated in table (1).
Table - 1
IV. RESULTS AND DISCUSSION
The results were obtained by considering an equivalent circuit of RMSA using
MATLAB, the various parameters of RMSA are calculated and is shown in figure 3, 4, 5 and 6.
From Figure 3, the maximum value occurs at the edge of the slot (y0 = 0) where the voltage is
maximum and the current is minimum; typical value of input impedance can vary from
150–350 ohms. From Figure 5, the feeding impedance of RMSA is perfectly matched with the
inset feed of 49.98 ohm.
2 2.2 2.4 2.6 2.8 3 3.2 3.4 3.6
x 10
9
200
250
300
350
400
450
X: 2.4e+009
Y: 321.4
frequency in GHZ V/S input impedance
frequency in GHZ
inputimpedance
0 5 10 15 20 25 30
0
50
100
150
200
250
300
350
X: 15
Y: 0.2845
feeding point
inputresistance
input resistance v/s feeding point
Figure 3: Variation of input impedance Figure 4: Variation of input impedance
[Zin] with frequency with feeding point
Parameters Values
Design frequency 2.4GHz
Substrate material FR4
Relative permittivity of the substrate 4.4
Thickness of the dielectric substrate 1.588cm
Effective dielectric constant 4.0858
Effective length 30.92cm
Extended length 0.7388cm
Actual length 29.44cm
Width 38.04cm
Feeding point 10.44cm
International Journal of Electronics and Communication Engineering Research and Development
(IJECERD), ISSN 2248-9525(Print), ISSN- 2248-9533 (Online) Volume 4, Number 2, April-June (2014)
18
2 2.2 2.4 2.6 2.8 3 3.2 3.4 3.6
x 10
9
0
20
40
60
80
100
120
140
X: 2.4e+009
Y: 49.98
frequency in GHZ V/S feeding inpedance ohm
frequency in GHZ
feedingimprdanceinohm
Figure 5: Variation of feeding impedence with frequency
From fig 6 & 7, it can be seen that the matching is perfect and the value of VSWR are 1
which is close to the ideal value of 1.The return loss is also found to be minimum .At our
designed frequency of 2.4 GHz RMSA return loss is minimum found to be -169.4db.
2 2.2 2.4 2.6 2.8 3 3.2 3.4 3.6
x 10
9
0
2
4
6
8
10
12
14
X: 2.4e+009
Y: 1
frequency in GHZ V/S VSWR
frequency in GHZ
VSWR
2 2.2 2.4 2.6 2.8 3 3.2 3.4 3.6
x 10
9
-180
-160
-140
-120
-100
-80
-60
-40
-20
0
X: 2.4e+009
Y: -169.4
frequency in GHz V/S Return Loss in Db
frequency in GHz
ReturnlossinDb
Figure 6: Variation of VSWR Figure 7: Variation of Return loss
versus frequency versus frequency
V. CONCLUSION
It is therefore concluded that our Rectangular microstrip antenna is perfectly designed
at 2.4 Ghz with a Bandwidth of 4.16%.
REFERENCES
[1] AdilHameed Ahmad and BasimKhalaf Jar‟alla,„Design and Simulation of Broadband
Rectangular Microstrip Antenna‟, Eng. Tech. V0l.26, No1. 2008.
[2] Antenna theory analysis & design by C.A. Balanis, 2nd Ed., John Wiley & sons, inc.
2005, New York.
[3] Sunil Kr. Singh, S. K. Kundu, Ravi Prakash ,N. T Markad, “Microstrip Stacked Patch
Antenna for next generation GSM”, IJENGG, Volume 2, November 4, December 2009.
[4] H.Legay; L.Shafai, “New stacked microstrip antenna with large band width & high
gain”.
International Journal of Electronics and Communication Engineering Research and Development
(IJECERD), ISSN 2248-9525(Print), ISSN- 2248-9533 (Online) Volume 4, Number 2, April-June (2014)
19
[5] D. Mandal, R. Kar, and A. K. Bhattacharjee , „Input impedance of rectangular
microstrip antennas on non-radiating edges for different feed sizes‟ Progress In
Electromagnetics Research C, Vol. 1, 191–198 ,2008.
[6] ShwetaSrivastava, Babau R, Vishvakarma and J. A. Ansari(2003), „Tunnel Diode
loaded Rectangular Microstrip Antenna for Milimeter Range‟, IEEE trans Antenna
Propag, Vol.51.NO.4,pp.750-755.
[7] S. C. Gao, L. W. Li, M. S. Leong, and T. S. Yeo, „Design and analysis of a novel
wideband microstrip antenna‟, in IEEE Antennas and Propagation International
Symposium,vol. 1, (Boston, Massachusetts), pp. 90–93, IEEE, July 2001.
[8] R. W. Dearnley,A Broadband Transmission Line Model for a Rectangular Microstrip
Antenna’, IEEE Trans. , Antennas and propagation, Vol. AP 37, No. 1, pp. 6 - 15,
January 1989.
[9] M .D .Deshpande, „Input Impedance of Microstrip Antenna" IEEE Trans. , Antennas
and propagation‟, Vol. AP 30, No. 4, pp. 645 - 650, July 1982.
[10] J. Bahl& P. Bhartia, „Microstrip Antennas‟ Artech House, 1980.
[11] K. Rambabu, M. Alam, J. Bornemann and M. A. Stuchly, „Compact Wideband
Dual-Polarized Microstrip Patch Antenna’, IEEE. 2004.

More Related Content

What's hot

Complementary symmetric corner truncated compact square microstrip antenna fo...
Complementary symmetric corner truncated compact square microstrip antenna fo...Complementary symmetric corner truncated compact square microstrip antenna fo...
Complementary symmetric corner truncated compact square microstrip antenna fo...IAEME Publication
 
Corner truncated inverted u slot triple band tunable rectangular microstrip...
Corner truncated inverted u   slot triple band tunable rectangular microstrip...Corner truncated inverted u   slot triple band tunable rectangular microstrip...
Corner truncated inverted u slot triple band tunable rectangular microstrip...IAEME Publication
 
IRJET- Improving Performance of Circularly Polarized Patch Antenna by Varying...
IRJET- Improving Performance of Circularly Polarized Patch Antenna by Varying...IRJET- Improving Performance of Circularly Polarized Patch Antenna by Varying...
IRJET- Improving Performance of Circularly Polarized Patch Antenna by Varying...IRJET Journal
 
Compact self complementary antenna for xband applications
Compact self complementary antenna for xband applicationsCompact self complementary antenna for xband applications
Compact self complementary antenna for xband applicationsIAEME Publication
 
Design and development of rectangular microstrip
Design and development of  rectangular microstripDesign and development of  rectangular microstrip
Design and development of rectangular microstripIAEME Publication
 
Octagon shaped slot loaded rectangular microstrip monopole antennas for
Octagon shaped slot loaded rectangular microstrip monopole antennas forOctagon shaped slot loaded rectangular microstrip monopole antennas for
Octagon shaped slot loaded rectangular microstrip monopole antennas forIAEME Publication
 
Design of omnidirectional linearly polarized hemispherical dra for
Design of omnidirectional linearly polarized hemispherical dra forDesign of omnidirectional linearly polarized hemispherical dra for
Design of omnidirectional linearly polarized hemispherical dra forIAEME Publication
 
IRJET - Microstrip Patch Antenna for Low Power Transceiver Application
IRJET - Microstrip Patch Antenna for Low Power Transceiver ApplicationIRJET - Microstrip Patch Antenna for Low Power Transceiver Application
IRJET - Microstrip Patch Antenna for Low Power Transceiver ApplicationIRJET Journal
 
Losses in Waveguide and Substrate Integrated Waveguide (SIW) For Ku Band: A C...
Losses in Waveguide and Substrate Integrated Waveguide (SIW) For Ku Band: A C...Losses in Waveguide and Substrate Integrated Waveguide (SIW) For Ku Band: A C...
Losses in Waveguide and Substrate Integrated Waveguide (SIW) For Ku Band: A C...IJMER
 
Substrate integrated waveguide power divider, circulator and coupler in [10 1...
Substrate integrated waveguide power divider, circulator and coupler in [10 1...Substrate integrated waveguide power divider, circulator and coupler in [10 1...
Substrate integrated waveguide power divider, circulator and coupler in [10 1...ijistjournal
 
Varactor diode loaded double square reconfigurable microstrip patch ante
Varactor diode loaded double square reconfigurable microstrip patch anteVaractor diode loaded double square reconfigurable microstrip patch ante
Varactor diode loaded double square reconfigurable microstrip patch anteIAEME Publication
 
Wideband frequency reconfigurable metamaterial antenna design with double H s...
Wideband frequency reconfigurable metamaterial antenna design with double H s...Wideband frequency reconfigurable metamaterial antenna design with double H s...
Wideband frequency reconfigurable metamaterial antenna design with double H s...journalBEEI
 
Design and development of aperture coupled rectangular microstrip antenna for...
Design and development of aperture coupled rectangular microstrip antenna for...Design and development of aperture coupled rectangular microstrip antenna for...
Design and development of aperture coupled rectangular microstrip antenna for...eSAT Journals
 
IRJET- Circularly Polarized Ultra Wide Band Ring Shaped DGS Microstrip An...
IRJET-  	  Circularly Polarized Ultra Wide Band Ring Shaped DGS Microstrip An...IRJET-  	  Circularly Polarized Ultra Wide Band Ring Shaped DGS Microstrip An...
IRJET- Circularly Polarized Ultra Wide Band Ring Shaped DGS Microstrip An...IRJET Journal
 
Design and development of aperture coupled
Design and development of aperture coupledDesign and development of aperture coupled
Design and development of aperture coupledeSAT Publishing House
 
Wideband millimeter-wave substrate integrated waveguide cavity-backed antenna...
Wideband millimeter-wave substrate integrated waveguide cavity-backed antenna...Wideband millimeter-wave substrate integrated waveguide cavity-backed antenna...
Wideband millimeter-wave substrate integrated waveguide cavity-backed antenna...journalBEEI
 

What's hot (19)

Complementary symmetric corner truncated compact square microstrip antenna fo...
Complementary symmetric corner truncated compact square microstrip antenna fo...Complementary symmetric corner truncated compact square microstrip antenna fo...
Complementary symmetric corner truncated compact square microstrip antenna fo...
 
Corner truncated inverted u slot triple band tunable rectangular microstrip...
Corner truncated inverted u   slot triple band tunable rectangular microstrip...Corner truncated inverted u   slot triple band tunable rectangular microstrip...
Corner truncated inverted u slot triple band tunable rectangular microstrip...
 
40120140503002
4012014050300240120140503002
40120140503002
 
IRJET- Improving Performance of Circularly Polarized Patch Antenna by Varying...
IRJET- Improving Performance of Circularly Polarized Patch Antenna by Varying...IRJET- Improving Performance of Circularly Polarized Patch Antenna by Varying...
IRJET- Improving Performance of Circularly Polarized Patch Antenna by Varying...
 
Compact self complementary antenna for xband applications
Compact self complementary antenna for xband applicationsCompact self complementary antenna for xband applications
Compact self complementary antenna for xband applications
 
Design and development of rectangular microstrip
Design and development of  rectangular microstripDesign and development of  rectangular microstrip
Design and development of rectangular microstrip
 
Octagon shaped slot loaded rectangular microstrip monopole antennas for
Octagon shaped slot loaded rectangular microstrip monopole antennas forOctagon shaped slot loaded rectangular microstrip monopole antennas for
Octagon shaped slot loaded rectangular microstrip monopole antennas for
 
Design of omnidirectional linearly polarized hemispherical dra for
Design of omnidirectional linearly polarized hemispherical dra forDesign of omnidirectional linearly polarized hemispherical dra for
Design of omnidirectional linearly polarized hemispherical dra for
 
IRJET - Microstrip Patch Antenna for Low Power Transceiver Application
IRJET - Microstrip Patch Antenna for Low Power Transceiver ApplicationIRJET - Microstrip Patch Antenna for Low Power Transceiver Application
IRJET - Microstrip Patch Antenna for Low Power Transceiver Application
 
Losses in Waveguide and Substrate Integrated Waveguide (SIW) For Ku Band: A C...
Losses in Waveguide and Substrate Integrated Waveguide (SIW) For Ku Band: A C...Losses in Waveguide and Substrate Integrated Waveguide (SIW) For Ku Band: A C...
Losses in Waveguide and Substrate Integrated Waveguide (SIW) For Ku Band: A C...
 
Substrate integrated waveguide power divider, circulator and coupler in [10 1...
Substrate integrated waveguide power divider, circulator and coupler in [10 1...Substrate integrated waveguide power divider, circulator and coupler in [10 1...
Substrate integrated waveguide power divider, circulator and coupler in [10 1...
 
Varactor diode loaded double square reconfigurable microstrip patch ante
Varactor diode loaded double square reconfigurable microstrip patch anteVaractor diode loaded double square reconfigurable microstrip patch ante
Varactor diode loaded double square reconfigurable microstrip patch ante
 
Wideband frequency reconfigurable metamaterial antenna design with double H s...
Wideband frequency reconfigurable metamaterial antenna design with double H s...Wideband frequency reconfigurable metamaterial antenna design with double H s...
Wideband frequency reconfigurable metamaterial antenna design with double H s...
 
Y4102193196
Y4102193196Y4102193196
Y4102193196
 
Design and development of aperture coupled rectangular microstrip antenna for...
Design and development of aperture coupled rectangular microstrip antenna for...Design and development of aperture coupled rectangular microstrip antenna for...
Design and development of aperture coupled rectangular microstrip antenna for...
 
IRJET- Circularly Polarized Ultra Wide Band Ring Shaped DGS Microstrip An...
IRJET-  	  Circularly Polarized Ultra Wide Band Ring Shaped DGS Microstrip An...IRJET-  	  Circularly Polarized Ultra Wide Band Ring Shaped DGS Microstrip An...
IRJET- Circularly Polarized Ultra Wide Band Ring Shaped DGS Microstrip An...
 
LAB File
LAB FileLAB File
LAB File
 
Design and development of aperture coupled
Design and development of aperture coupledDesign and development of aperture coupled
Design and development of aperture coupled
 
Wideband millimeter-wave substrate integrated waveguide cavity-backed antenna...
Wideband millimeter-wave substrate integrated waveguide cavity-backed antenna...Wideband millimeter-wave substrate integrated waveguide cavity-backed antenna...
Wideband millimeter-wave substrate integrated waveguide cavity-backed antenna...
 

Viewers also liked

Duplexer
DuplexerDuplexer
Duplexerescola
 
TRI-BAND MICROSTRIP PATCH ANTENNA FOR S-BAND NANO SATELLITE APPLICATION USING...
TRI-BAND MICROSTRIP PATCH ANTENNA FOR S-BAND NANO SATELLITE APPLICATION USING...TRI-BAND MICROSTRIP PATCH ANTENNA FOR S-BAND NANO SATELLITE APPLICATION USING...
TRI-BAND MICROSTRIP PATCH ANTENNA FOR S-BAND NANO SATELLITE APPLICATION USING...ijsrd.com
 
2011 07-12 adrian yanes - aalto 1
2011 07-12 adrian yanes - aalto 12011 07-12 adrian yanes - aalto 1
2011 07-12 adrian yanes - aalto 1E3 Futura
 
Final prototype
Final prototypeFinal prototype
Final prototypeesmith2002
 
Deployable Helical Antenna for Nano-Satellites
Deployable Helical Antenna for Nano-SatellitesDeployable Helical Antenna for Nano-Satellites
Deployable Helical Antenna for Nano-SatellitesDaniel Ochoa
 
Dual Band Microstrip Antenna
Dual Band Microstrip AntennaDual Band Microstrip Antenna
Dual Band Microstrip AntennaAnas Kadri
 
How to design Microstrip patch antenna design in ads 2009
How to design Microstrip patch antenna design in ads 2009How to design Microstrip patch antenna design in ads 2009
How to design Microstrip patch antenna design in ads 2009THANDAIAH PRABU
 
Microstrip Patch Antenna Design
Microstrip Patch Antenna DesignMicrostrip Patch Antenna Design
Microstrip Patch Antenna DesignAmit Samanta
 
Satelite communication
Satelite communicationSatelite communication
Satelite communicationSyam Kumar
 
Design and Simulation Microstrip patch Antenna using CST Microwave Studio
Design and Simulation Microstrip patch Antenna  using CST Microwave StudioDesign and Simulation Microstrip patch Antenna  using CST Microwave Studio
Design and Simulation Microstrip patch Antenna using CST Microwave StudioAymen Al-obaidi
 
ppt on Smart antennas
ppt on Smart antennasppt on Smart antennas
ppt on Smart antennasRitesh Kumar
 

Viewers also liked (13)

Duplexer
DuplexerDuplexer
Duplexer
 
TRI-BAND MICROSTRIP PATCH ANTENNA FOR S-BAND NANO SATELLITE APPLICATION USING...
TRI-BAND MICROSTRIP PATCH ANTENNA FOR S-BAND NANO SATELLITE APPLICATION USING...TRI-BAND MICROSTRIP PATCH ANTENNA FOR S-BAND NANO SATELLITE APPLICATION USING...
TRI-BAND MICROSTRIP PATCH ANTENNA FOR S-BAND NANO SATELLITE APPLICATION USING...
 
2011 07-12 adrian yanes - aalto 1
2011 07-12 adrian yanes - aalto 12011 07-12 adrian yanes - aalto 1
2011 07-12 adrian yanes - aalto 1
 
Srv p18-intro-v30
Srv p18-intro-v30Srv p18-intro-v30
Srv p18-intro-v30
 
Final prototype
Final prototypeFinal prototype
Final prototype
 
Deployable Helical Antenna for Nano-Satellites
Deployable Helical Antenna for Nano-SatellitesDeployable Helical Antenna for Nano-Satellites
Deployable Helical Antenna for Nano-Satellites
 
Libro de ICA
Libro de ICALibro de ICA
Libro de ICA
 
Dual Band Microstrip Antenna
Dual Band Microstrip AntennaDual Band Microstrip Antenna
Dual Band Microstrip Antenna
 
How to design Microstrip patch antenna design in ads 2009
How to design Microstrip patch antenna design in ads 2009How to design Microstrip patch antenna design in ads 2009
How to design Microstrip patch antenna design in ads 2009
 
Microstrip Patch Antenna Design
Microstrip Patch Antenna DesignMicrostrip Patch Antenna Design
Microstrip Patch Antenna Design
 
Satelite communication
Satelite communicationSatelite communication
Satelite communication
 
Design and Simulation Microstrip patch Antenna using CST Microwave Studio
Design and Simulation Microstrip patch Antenna  using CST Microwave StudioDesign and Simulation Microstrip patch Antenna  using CST Microwave Studio
Design and Simulation Microstrip patch Antenna using CST Microwave Studio
 
ppt on Smart antennas
ppt on Smart antennasppt on Smart antennas
ppt on Smart antennas
 

Similar to An approach to design a rectangular microstrip patch antenna in s band by tlm model.pdf an approach to design a rectangular microstrip patch antenna in s band by tlm model

Pentagon and circular ring slot loaded rectangular microstrip monopole
Pentagon and circular ring slot loaded rectangular microstrip monopolePentagon and circular ring slot loaded rectangular microstrip monopole
Pentagon and circular ring slot loaded rectangular microstrip monopoleIAEME Publication
 
Design and development of low profile, dual band microstrip antenna with enha...
Design and development of low profile, dual band microstrip antenna with enha...Design and development of low profile, dual band microstrip antenna with enha...
Design and development of low profile, dual band microstrip antenna with enha...IAEME Publication
 
Semi-circular compact CPW-fed antenna for ultra-wideband applications
Semi-circular compact CPW-fed antenna for ultra-wideband applicationsSemi-circular compact CPW-fed antenna for ultra-wideband applications
Semi-circular compact CPW-fed antenna for ultra-wideband applicationsTELKOMNIKA JOURNAL
 
Rectangular slot loaded monopole microstrip antennas for triple band operation
Rectangular slot loaded monopole microstrip antennas for triple band operationRectangular slot loaded monopole microstrip antennas for triple band operation
Rectangular slot loaded monopole microstrip antennas for triple band operationIAEME Publication
 
Corner truncated rectangular slot loaded monopole microstrip antennas for
Corner truncated rectangular slot loaded monopole microstrip antennas forCorner truncated rectangular slot loaded monopole microstrip antennas for
Corner truncated rectangular slot loaded monopole microstrip antennas forIAEME Publication
 
Design and development of microstrip array antenna for wide dual band operation
Design and development of microstrip array antenna for wide dual band operationDesign and development of microstrip array antenna for wide dual band operation
Design and development of microstrip array antenna for wide dual band operationIAEME Publication
 
A Broadband Rectangular Microstrip Patch Antenna for Wireless Communications
A Broadband Rectangular Microstrip Patch Antenna for Wireless CommunicationsA Broadband Rectangular Microstrip Patch Antenna for Wireless Communications
A Broadband Rectangular Microstrip Patch Antenna for Wireless Communicationswww.nbtc.go.th
 
H shape defected ground structure dgs- embedded square patch antenna
H shape defected ground structure  dgs- embedded square patch antennaH shape defected ground structure  dgs- embedded square patch antenna
H shape defected ground structure dgs- embedded square patch antennaIAEME Publication
 
H-SHAPE DEFECTED GROUND STRUCTURE (DGS) EMBEDDED SQUARE PATCH ANTENNA
H-SHAPE DEFECTED GROUND STRUCTURE (DGS) EMBEDDED SQUARE PATCH ANTENNAH-SHAPE DEFECTED GROUND STRUCTURE (DGS) EMBEDDED SQUARE PATCH ANTENNA
H-SHAPE DEFECTED GROUND STRUCTURE (DGS) EMBEDDED SQUARE PATCH ANTENNAIAEME Publication
 
Electrically Controlled Frequency Reconfigurable Comb Type Antenna for Wirele...
Electrically Controlled Frequency Reconfigurable Comb Type Antenna for Wirele...Electrically Controlled Frequency Reconfigurable Comb Type Antenna for Wirele...
Electrically Controlled Frequency Reconfigurable Comb Type Antenna for Wirele...IDES Editor
 
Design of a Dual-Band Microstrip Patch Antenna for GPS,WiMAX and WLAN.
Design of a Dual-Band Microstrip Patch Antenna for GPS,WiMAX and WLAN.Design of a Dual-Band Microstrip Patch Antenna for GPS,WiMAX and WLAN.
Design of a Dual-Band Microstrip Patch Antenna for GPS,WiMAX and WLAN.IOSR Journals
 
Design of a Dual-Band Microstrip Patch Antenna for GPS,WiMAX and WLAN
Design of a Dual-Band Microstrip Patch Antenna for GPS,WiMAX and WLANDesign of a Dual-Band Microstrip Patch Antenna for GPS,WiMAX and WLAN
Design of a Dual-Band Microstrip Patch Antenna for GPS,WiMAX and WLANIOSR Journals
 
A Compact Dual Band Elliptical Microstrip Antenna for Ku/K Band Satellite App...
A Compact Dual Band Elliptical Microstrip Antenna for Ku/K Band Satellite App...A Compact Dual Band Elliptical Microstrip Antenna for Ku/K Band Satellite App...
A Compact Dual Band Elliptical Microstrip Antenna for Ku/K Band Satellite App...IJECEIAES
 
Optimization of rectangular microstrip patch antenna parameters in l band by e
Optimization of rectangular microstrip patch antenna parameters in l band by eOptimization of rectangular microstrip patch antenna parameters in l band by e
Optimization of rectangular microstrip patch antenna parameters in l band by eIAEME Publication
 
STUDY OF ARRAY BI-CONICAL ANTENNA FOR DME APPLICATIONS
STUDY OF ARRAY BI-CONICAL ANTENNA FOR DME APPLICATIONSSTUDY OF ARRAY BI-CONICAL ANTENNA FOR DME APPLICATIONS
STUDY OF ARRAY BI-CONICAL ANTENNA FOR DME APPLICATIONSijwmn
 

Similar to An approach to design a rectangular microstrip patch antenna in s band by tlm model.pdf an approach to design a rectangular microstrip patch antenna in s band by tlm model (20)

Pentagon and circular ring slot loaded rectangular microstrip monopole
Pentagon and circular ring slot loaded rectangular microstrip monopolePentagon and circular ring slot loaded rectangular microstrip monopole
Pentagon and circular ring slot loaded rectangular microstrip monopole
 
Design and development of low profile, dual band microstrip antenna with enha...
Design and development of low profile, dual band microstrip antenna with enha...Design and development of low profile, dual band microstrip antenna with enha...
Design and development of low profile, dual band microstrip antenna with enha...
 
40120140505004
4012014050500440120140505004
40120140505004
 
Semi-circular compact CPW-fed antenna for ultra-wideband applications
Semi-circular compact CPW-fed antenna for ultra-wideband applicationsSemi-circular compact CPW-fed antenna for ultra-wideband applications
Semi-circular compact CPW-fed antenna for ultra-wideband applications
 
Rectangular slot loaded monopole microstrip antennas for triple band operation
Rectangular slot loaded monopole microstrip antennas for triple band operationRectangular slot loaded monopole microstrip antennas for triple band operation
Rectangular slot loaded monopole microstrip antennas for triple band operation
 
40120140502013
4012014050201340120140502013
40120140502013
 
Corner truncated rectangular slot loaded monopole microstrip antennas for
Corner truncated rectangular slot loaded monopole microstrip antennas forCorner truncated rectangular slot loaded monopole microstrip antennas for
Corner truncated rectangular slot loaded monopole microstrip antennas for
 
40120140501019
4012014050101940120140501019
40120140501019
 
Design and development of microstrip array antenna for wide dual band operation
Design and development of microstrip array antenna for wide dual band operationDesign and development of microstrip array antenna for wide dual band operation
Design and development of microstrip array antenna for wide dual band operation
 
A Broadband Rectangular Microstrip Patch Antenna for Wireless Communications
A Broadband Rectangular Microstrip Patch Antenna for Wireless CommunicationsA Broadband Rectangular Microstrip Patch Antenna for Wireless Communications
A Broadband Rectangular Microstrip Patch Antenna for Wireless Communications
 
H shape defected ground structure dgs- embedded square patch antenna
H shape defected ground structure  dgs- embedded square patch antennaH shape defected ground structure  dgs- embedded square patch antenna
H shape defected ground structure dgs- embedded square patch antenna
 
H-SHAPE DEFECTED GROUND STRUCTURE (DGS) EMBEDDED SQUARE PATCH ANTENNA
H-SHAPE DEFECTED GROUND STRUCTURE (DGS) EMBEDDED SQUARE PATCH ANTENNAH-SHAPE DEFECTED GROUND STRUCTURE (DGS) EMBEDDED SQUARE PATCH ANTENNA
H-SHAPE DEFECTED GROUND STRUCTURE (DGS) EMBEDDED SQUARE PATCH ANTENNA
 
Electrically Controlled Frequency Reconfigurable Comb Type Antenna for Wirele...
Electrically Controlled Frequency Reconfigurable Comb Type Antenna for Wirele...Electrically Controlled Frequency Reconfigurable Comb Type Antenna for Wirele...
Electrically Controlled Frequency Reconfigurable Comb Type Antenna for Wirele...
 
Ib3614041408
Ib3614041408Ib3614041408
Ib3614041408
 
Ib3614041408
Ib3614041408Ib3614041408
Ib3614041408
 
Design of a Dual-Band Microstrip Patch Antenna for GPS,WiMAX and WLAN.
Design of a Dual-Band Microstrip Patch Antenna for GPS,WiMAX and WLAN.Design of a Dual-Band Microstrip Patch Antenna for GPS,WiMAX and WLAN.
Design of a Dual-Band Microstrip Patch Antenna for GPS,WiMAX and WLAN.
 
Design of a Dual-Band Microstrip Patch Antenna for GPS,WiMAX and WLAN
Design of a Dual-Band Microstrip Patch Antenna for GPS,WiMAX and WLANDesign of a Dual-Band Microstrip Patch Antenna for GPS,WiMAX and WLAN
Design of a Dual-Band Microstrip Patch Antenna for GPS,WiMAX and WLAN
 
A Compact Dual Band Elliptical Microstrip Antenna for Ku/K Band Satellite App...
A Compact Dual Band Elliptical Microstrip Antenna for Ku/K Band Satellite App...A Compact Dual Band Elliptical Microstrip Antenna for Ku/K Band Satellite App...
A Compact Dual Band Elliptical Microstrip Antenna for Ku/K Band Satellite App...
 
Optimization of rectangular microstrip patch antenna parameters in l band by e
Optimization of rectangular microstrip patch antenna parameters in l band by eOptimization of rectangular microstrip patch antenna parameters in l band by e
Optimization of rectangular microstrip patch antenna parameters in l band by e
 
STUDY OF ARRAY BI-CONICAL ANTENNA FOR DME APPLICATIONS
STUDY OF ARRAY BI-CONICAL ANTENNA FOR DME APPLICATIONSSTUDY OF ARRAY BI-CONICAL ANTENNA FOR DME APPLICATIONS
STUDY OF ARRAY BI-CONICAL ANTENNA FOR DME APPLICATIONS
 

More from prj_publication

International library management systems
International library management systemsInternational library management systems
International library management systemsprj_publication
 
Smes role in reduction of the unemployment problem in the area located in sa...
Smes  role in reduction of the unemployment problem in the area located in sa...Smes  role in reduction of the unemployment problem in the area located in sa...
Smes role in reduction of the unemployment problem in the area located in sa...prj_publication
 
Diabetes and allied diseases research in india – a
Diabetes and allied diseases research in india – aDiabetes and allied diseases research in india – a
Diabetes and allied diseases research in india – aprj_publication
 
Influences of child endorsers on the consumers
Influences of child endorsers on the consumersInfluences of child endorsers on the consumers
Influences of child endorsers on the consumersprj_publication
 
Connecting the ‘long tails’ of content and users
Connecting the ‘long tails’ of content and usersConnecting the ‘long tails’ of content and users
Connecting the ‘long tails’ of content and usersprj_publication
 
The role of green intellectual capital management in acquiring green competit...
The role of green intellectual capital management in acquiring green competit...The role of green intellectual capital management in acquiring green competit...
The role of green intellectual capital management in acquiring green competit...prj_publication
 
Awareness of digital library among library professional
Awareness of digital library among library professionalAwareness of digital library among library professional
Awareness of digital library among library professionalprj_publication
 
The study of scope and implementation of lean aspects
The study of scope and implementation of lean aspectsThe study of scope and implementation of lean aspects
The study of scope and implementation of lean aspectsprj_publication
 
Review of three categories of fingerprint recognition 2
Review of three categories of fingerprint recognition 2Review of three categories of fingerprint recognition 2
Review of three categories of fingerprint recognition 2prj_publication
 
Extended information technology enabled service quality model for life insura...
Extended information technology enabled service quality model for life insura...Extended information technology enabled service quality model for life insura...
Extended information technology enabled service quality model for life insura...prj_publication
 
Prevalence and factors of smoking among the saudi youth in the northern borde...
Prevalence and factors of smoking among the saudi youth in the northern borde...Prevalence and factors of smoking among the saudi youth in the northern borde...
Prevalence and factors of smoking among the saudi youth in the northern borde...prj_publication
 
Impact of job attitude towards srf limited, trichy
Impact of job attitude towards srf limited, trichyImpact of job attitude towards srf limited, trichy
Impact of job attitude towards srf limited, trichyprj_publication
 
Impact of shg bank linkage programme on women shgs empowerment with reference...
Impact of shg bank linkage programme on women shgs empowerment with reference...Impact of shg bank linkage programme on women shgs empowerment with reference...
Impact of shg bank linkage programme on women shgs empowerment with reference...prj_publication
 
Service gap analysis of footwear retail outlets a study 2
Service gap analysis of footwear retail outlets  a study 2Service gap analysis of footwear retail outlets  a study 2
Service gap analysis of footwear retail outlets a study 2prj_publication
 
Emotional intelligence in teachers a tool to transform educational institutes...
Emotional intelligence in teachers a tool to transform educational institutes...Emotional intelligence in teachers a tool to transform educational institutes...
Emotional intelligence in teachers a tool to transform educational institutes...prj_publication
 
‘E aushadhi’ a drug warehouse management system
‘E aushadhi’ a drug warehouse management system‘E aushadhi’ a drug warehouse management system
‘E aushadhi’ a drug warehouse management systemprj_publication
 
An appraisal of users’ attitudinal behaviour in
An appraisal of users’ attitudinal behaviour inAn appraisal of users’ attitudinal behaviour in
An appraisal of users’ attitudinal behaviour inprj_publication
 
Akce international journal of graphs and
Akce international journal of graphs andAkce international journal of graphs and
Akce international journal of graphs andprj_publication
 
Distribution of the number of times m m 2 n
Distribution of the number of times m m 2 nDistribution of the number of times m m 2 n
Distribution of the number of times m m 2 nprj_publication
 
A scientometric analysis of research productivity
A scientometric analysis of research productivityA scientometric analysis of research productivity
A scientometric analysis of research productivityprj_publication
 

More from prj_publication (20)

International library management systems
International library management systemsInternational library management systems
International library management systems
 
Smes role in reduction of the unemployment problem in the area located in sa...
Smes  role in reduction of the unemployment problem in the area located in sa...Smes  role in reduction of the unemployment problem in the area located in sa...
Smes role in reduction of the unemployment problem in the area located in sa...
 
Diabetes and allied diseases research in india – a
Diabetes and allied diseases research in india – aDiabetes and allied diseases research in india – a
Diabetes and allied diseases research in india – a
 
Influences of child endorsers on the consumers
Influences of child endorsers on the consumersInfluences of child endorsers on the consumers
Influences of child endorsers on the consumers
 
Connecting the ‘long tails’ of content and users
Connecting the ‘long tails’ of content and usersConnecting the ‘long tails’ of content and users
Connecting the ‘long tails’ of content and users
 
The role of green intellectual capital management in acquiring green competit...
The role of green intellectual capital management in acquiring green competit...The role of green intellectual capital management in acquiring green competit...
The role of green intellectual capital management in acquiring green competit...
 
Awareness of digital library among library professional
Awareness of digital library among library professionalAwareness of digital library among library professional
Awareness of digital library among library professional
 
The study of scope and implementation of lean aspects
The study of scope and implementation of lean aspectsThe study of scope and implementation of lean aspects
The study of scope and implementation of lean aspects
 
Review of three categories of fingerprint recognition 2
Review of three categories of fingerprint recognition 2Review of three categories of fingerprint recognition 2
Review of three categories of fingerprint recognition 2
 
Extended information technology enabled service quality model for life insura...
Extended information technology enabled service quality model for life insura...Extended information technology enabled service quality model for life insura...
Extended information technology enabled service quality model for life insura...
 
Prevalence and factors of smoking among the saudi youth in the northern borde...
Prevalence and factors of smoking among the saudi youth in the northern borde...Prevalence and factors of smoking among the saudi youth in the northern borde...
Prevalence and factors of smoking among the saudi youth in the northern borde...
 
Impact of job attitude towards srf limited, trichy
Impact of job attitude towards srf limited, trichyImpact of job attitude towards srf limited, trichy
Impact of job attitude towards srf limited, trichy
 
Impact of shg bank linkage programme on women shgs empowerment with reference...
Impact of shg bank linkage programme on women shgs empowerment with reference...Impact of shg bank linkage programme on women shgs empowerment with reference...
Impact of shg bank linkage programme on women shgs empowerment with reference...
 
Service gap analysis of footwear retail outlets a study 2
Service gap analysis of footwear retail outlets  a study 2Service gap analysis of footwear retail outlets  a study 2
Service gap analysis of footwear retail outlets a study 2
 
Emotional intelligence in teachers a tool to transform educational institutes...
Emotional intelligence in teachers a tool to transform educational institutes...Emotional intelligence in teachers a tool to transform educational institutes...
Emotional intelligence in teachers a tool to transform educational institutes...
 
‘E aushadhi’ a drug warehouse management system
‘E aushadhi’ a drug warehouse management system‘E aushadhi’ a drug warehouse management system
‘E aushadhi’ a drug warehouse management system
 
An appraisal of users’ attitudinal behaviour in
An appraisal of users’ attitudinal behaviour inAn appraisal of users’ attitudinal behaviour in
An appraisal of users’ attitudinal behaviour in
 
Akce international journal of graphs and
Akce international journal of graphs andAkce international journal of graphs and
Akce international journal of graphs and
 
Distribution of the number of times m m 2 n
Distribution of the number of times m m 2 nDistribution of the number of times m m 2 n
Distribution of the number of times m m 2 n
 
A scientometric analysis of research productivity
A scientometric analysis of research productivityA scientometric analysis of research productivity
A scientometric analysis of research productivity
 

Recently uploaded

High Profile Call Girls Nagpur Isha Call 7001035870 Meet With Nagpur Escorts
High Profile Call Girls Nagpur Isha Call 7001035870 Meet With Nagpur EscortsHigh Profile Call Girls Nagpur Isha Call 7001035870 Meet With Nagpur Escorts
High Profile Call Girls Nagpur Isha Call 7001035870 Meet With Nagpur Escortsranjana rawat
 
Gurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort service
Gurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort serviceGurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort service
Gurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort servicejennyeacort
 
Artificial-Intelligence-in-Electronics (K).pptx
Artificial-Intelligence-in-Electronics (K).pptxArtificial-Intelligence-in-Electronics (K).pptx
Artificial-Intelligence-in-Electronics (K).pptxbritheesh05
 
What are the advantages and disadvantages of membrane structures.pptx
What are the advantages and disadvantages of membrane structures.pptxWhat are the advantages and disadvantages of membrane structures.pptx
What are the advantages and disadvantages of membrane structures.pptxwendy cai
 
microprocessor 8085 and its interfacing
microprocessor 8085  and its interfacingmicroprocessor 8085  and its interfacing
microprocessor 8085 and its interfacingjaychoudhary37
 
Heart Disease Prediction using machine learning.pptx
Heart Disease Prediction using machine learning.pptxHeart Disease Prediction using machine learning.pptx
Heart Disease Prediction using machine learning.pptxPoojaBan
 
High Profile Call Girls Nagpur Meera Call 7001035870 Meet With Nagpur Escorts
High Profile Call Girls Nagpur Meera Call 7001035870 Meet With Nagpur EscortsHigh Profile Call Girls Nagpur Meera Call 7001035870 Meet With Nagpur Escorts
High Profile Call Girls Nagpur Meera Call 7001035870 Meet With Nagpur EscortsCall Girls in Nagpur High Profile
 
VIP Call Girls Service Hitech City Hyderabad Call +91-8250192130
VIP Call Girls Service Hitech City Hyderabad Call +91-8250192130VIP Call Girls Service Hitech City Hyderabad Call +91-8250192130
VIP Call Girls Service Hitech City Hyderabad Call +91-8250192130Suhani Kapoor
 
HARMONY IN THE NATURE AND EXISTENCE - Unit-IV
HARMONY IN THE NATURE AND EXISTENCE - Unit-IVHARMONY IN THE NATURE AND EXISTENCE - Unit-IV
HARMONY IN THE NATURE AND EXISTENCE - Unit-IVRajaP95
 
OSVC_Meta-Data based Simulation Automation to overcome Verification Challenge...
OSVC_Meta-Data based Simulation Automation to overcome Verification Challenge...OSVC_Meta-Data based Simulation Automation to overcome Verification Challenge...
OSVC_Meta-Data based Simulation Automation to overcome Verification Challenge...Soham Mondal
 
Study on Air-Water & Water-Water Heat Exchange in a Finned Tube Exchanger
Study on Air-Water & Water-Water Heat Exchange in a Finned Tube ExchangerStudy on Air-Water & Water-Water Heat Exchange in a Finned Tube Exchanger
Study on Air-Water & Water-Water Heat Exchange in a Finned Tube ExchangerAnamika Sarkar
 
Application of Residue Theorem to evaluate real integrations.pptx
Application of Residue Theorem to evaluate real integrations.pptxApplication of Residue Theorem to evaluate real integrations.pptx
Application of Residue Theorem to evaluate real integrations.pptx959SahilShah
 
GDSC ASEB Gen AI study jams presentation
GDSC ASEB Gen AI study jams presentationGDSC ASEB Gen AI study jams presentation
GDSC ASEB Gen AI study jams presentationGDSCAESB
 
APPLICATIONS-AC/DC DRIVES-OPERATING CHARACTERISTICS
APPLICATIONS-AC/DC DRIVES-OPERATING CHARACTERISTICSAPPLICATIONS-AC/DC DRIVES-OPERATING CHARACTERISTICS
APPLICATIONS-AC/DC DRIVES-OPERATING CHARACTERISTICSKurinjimalarL3
 
Sachpazis Costas: Geotechnical Engineering: A student's Perspective Introduction
Sachpazis Costas: Geotechnical Engineering: A student's Perspective IntroductionSachpazis Costas: Geotechnical Engineering: A student's Perspective Introduction
Sachpazis Costas: Geotechnical Engineering: A student's Perspective IntroductionDr.Costas Sachpazis
 
Call Girls Delhi {Jodhpur} 9711199012 high profile service
Call Girls Delhi {Jodhpur} 9711199012 high profile serviceCall Girls Delhi {Jodhpur} 9711199012 high profile service
Call Girls Delhi {Jodhpur} 9711199012 high profile servicerehmti665
 
Sheet Pile Wall Design and Construction: A Practical Guide for Civil Engineer...
Sheet Pile Wall Design and Construction: A Practical Guide for Civil Engineer...Sheet Pile Wall Design and Construction: A Practical Guide for Civil Engineer...
Sheet Pile Wall Design and Construction: A Practical Guide for Civil Engineer...Dr.Costas Sachpazis
 
VIP Call Girls Service Kondapur Hyderabad Call +91-8250192130
VIP Call Girls Service Kondapur Hyderabad Call +91-8250192130VIP Call Girls Service Kondapur Hyderabad Call +91-8250192130
VIP Call Girls Service Kondapur Hyderabad Call +91-8250192130Suhani Kapoor
 
Past, Present and Future of Generative AI
Past, Present and Future of Generative AIPast, Present and Future of Generative AI
Past, Present and Future of Generative AIabhishek36461
 

Recently uploaded (20)

Exploring_Network_Security_with_JA3_by_Rakesh Seal.pptx
Exploring_Network_Security_with_JA3_by_Rakesh Seal.pptxExploring_Network_Security_with_JA3_by_Rakesh Seal.pptx
Exploring_Network_Security_with_JA3_by_Rakesh Seal.pptx
 
High Profile Call Girls Nagpur Isha Call 7001035870 Meet With Nagpur Escorts
High Profile Call Girls Nagpur Isha Call 7001035870 Meet With Nagpur EscortsHigh Profile Call Girls Nagpur Isha Call 7001035870 Meet With Nagpur Escorts
High Profile Call Girls Nagpur Isha Call 7001035870 Meet With Nagpur Escorts
 
Gurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort service
Gurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort serviceGurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort service
Gurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort service
 
Artificial-Intelligence-in-Electronics (K).pptx
Artificial-Intelligence-in-Electronics (K).pptxArtificial-Intelligence-in-Electronics (K).pptx
Artificial-Intelligence-in-Electronics (K).pptx
 
What are the advantages and disadvantages of membrane structures.pptx
What are the advantages and disadvantages of membrane structures.pptxWhat are the advantages and disadvantages of membrane structures.pptx
What are the advantages and disadvantages of membrane structures.pptx
 
microprocessor 8085 and its interfacing
microprocessor 8085  and its interfacingmicroprocessor 8085  and its interfacing
microprocessor 8085 and its interfacing
 
Heart Disease Prediction using machine learning.pptx
Heart Disease Prediction using machine learning.pptxHeart Disease Prediction using machine learning.pptx
Heart Disease Prediction using machine learning.pptx
 
High Profile Call Girls Nagpur Meera Call 7001035870 Meet With Nagpur Escorts
High Profile Call Girls Nagpur Meera Call 7001035870 Meet With Nagpur EscortsHigh Profile Call Girls Nagpur Meera Call 7001035870 Meet With Nagpur Escorts
High Profile Call Girls Nagpur Meera Call 7001035870 Meet With Nagpur Escorts
 
VIP Call Girls Service Hitech City Hyderabad Call +91-8250192130
VIP Call Girls Service Hitech City Hyderabad Call +91-8250192130VIP Call Girls Service Hitech City Hyderabad Call +91-8250192130
VIP Call Girls Service Hitech City Hyderabad Call +91-8250192130
 
HARMONY IN THE NATURE AND EXISTENCE - Unit-IV
HARMONY IN THE NATURE AND EXISTENCE - Unit-IVHARMONY IN THE NATURE AND EXISTENCE - Unit-IV
HARMONY IN THE NATURE AND EXISTENCE - Unit-IV
 
OSVC_Meta-Data based Simulation Automation to overcome Verification Challenge...
OSVC_Meta-Data based Simulation Automation to overcome Verification Challenge...OSVC_Meta-Data based Simulation Automation to overcome Verification Challenge...
OSVC_Meta-Data based Simulation Automation to overcome Verification Challenge...
 
Study on Air-Water & Water-Water Heat Exchange in a Finned Tube Exchanger
Study on Air-Water & Water-Water Heat Exchange in a Finned Tube ExchangerStudy on Air-Water & Water-Water Heat Exchange in a Finned Tube Exchanger
Study on Air-Water & Water-Water Heat Exchange in a Finned Tube Exchanger
 
Application of Residue Theorem to evaluate real integrations.pptx
Application of Residue Theorem to evaluate real integrations.pptxApplication of Residue Theorem to evaluate real integrations.pptx
Application of Residue Theorem to evaluate real integrations.pptx
 
GDSC ASEB Gen AI study jams presentation
GDSC ASEB Gen AI study jams presentationGDSC ASEB Gen AI study jams presentation
GDSC ASEB Gen AI study jams presentation
 
APPLICATIONS-AC/DC DRIVES-OPERATING CHARACTERISTICS
APPLICATIONS-AC/DC DRIVES-OPERATING CHARACTERISTICSAPPLICATIONS-AC/DC DRIVES-OPERATING CHARACTERISTICS
APPLICATIONS-AC/DC DRIVES-OPERATING CHARACTERISTICS
 
Sachpazis Costas: Geotechnical Engineering: A student's Perspective Introduction
Sachpazis Costas: Geotechnical Engineering: A student's Perspective IntroductionSachpazis Costas: Geotechnical Engineering: A student's Perspective Introduction
Sachpazis Costas: Geotechnical Engineering: A student's Perspective Introduction
 
Call Girls Delhi {Jodhpur} 9711199012 high profile service
Call Girls Delhi {Jodhpur} 9711199012 high profile serviceCall Girls Delhi {Jodhpur} 9711199012 high profile service
Call Girls Delhi {Jodhpur} 9711199012 high profile service
 
Sheet Pile Wall Design and Construction: A Practical Guide for Civil Engineer...
Sheet Pile Wall Design and Construction: A Practical Guide for Civil Engineer...Sheet Pile Wall Design and Construction: A Practical Guide for Civil Engineer...
Sheet Pile Wall Design and Construction: A Practical Guide for Civil Engineer...
 
VIP Call Girls Service Kondapur Hyderabad Call +91-8250192130
VIP Call Girls Service Kondapur Hyderabad Call +91-8250192130VIP Call Girls Service Kondapur Hyderabad Call +91-8250192130
VIP Call Girls Service Kondapur Hyderabad Call +91-8250192130
 
Past, Present and Future of Generative AI
Past, Present and Future of Generative AIPast, Present and Future of Generative AI
Past, Present and Future of Generative AI
 

An approach to design a rectangular microstrip patch antenna in s band by tlm model.pdf an approach to design a rectangular microstrip patch antenna in s band by tlm model

  • 1. International Journal of Electronics and Communication Engineering Research and Development (IJECERD), ISSN 2248-9525(Print), ISSN- 2248-9533 (Online) Volume 4, Number 2, April-June (2014) 13 AN APPROACH TO DESIGN A RECTANGULAR MICROSTRIP PATCH ANTENNA IN S BAND BY TLM MODEL [1] DevarajaNaik R L, [2] MurthiMahadevaNaik.G, [3] Dr. Naveen Kumar S K [1][2] Dept. of Electronics and Communication. M C E, Malnad College of Engineering, Hassan [3] Dept. of Electronics, Mangalore University ABSTRACT In this paper we have designed a rectangular microstrip antenna in ‘S’ band transmission line model. The S band frequency ranges from 2 GHz to 4GHz for wireless application. The desired frequency is chosen to be 2.4 GHz at which the patch antenna is designed to improve the bandwidth. After calculating the various parameters such as width, effective dielectric constant, effective length and actual length. The antenna impedance is matched to 50 ohm using inset feed. The results are obtained (Input Impedance, reflection coefficient, SWR and bandwidth) by using MATLAB software. Keywords: Rectangular Microstrip Antenna, Impedance, Feeding Point Reflection Co-Efficient, Return Loss, VSWR. I. INTRODUCTION In recent years the area of microstrip antenna has seen many inventive works and is one of the most dynamic fields in wireless communication field. For simplify, analysis and performance prediction of the patch is generally square, rectangular, circular, triangular, and elliptical or some other common shapes. Among these the rectangular and circular patches are probably the most extensively used patches. To analyse a rectangular microstrip antenna using transmission line and cavity model become simpler. In this paper a rectangular microstrippatchantenna using transmission line model in S band is designed. The details of the design are given in the following sections. Microstrip patch antennas possess a very high antenna quality factor (Q) which represents the losses associated with the antenna where a large Q would lead to a narrow bandwidth and low efficiency. The factor Q can be reduced by increasing the thickness of the dielectric substrate but as the thickness will increase there will be a simultaneous increase in the IJECERD © PRJ PUBLICATION International Journal of Electronics and Communication Engineering Research and Development (IJECERD) ISSN 2248– 9525 (Print) ISSN 2248 –9533 (Online) Volume 4, Number 2, April- June (2014), pp. 13-19 © PRJ Publication, http://www.prjpublication.com/IJECERD.asp
  • 2. International Journal of Electronics and Communication Engineering Research and Development (IJECERD), ISSN 2248-9525(Print), ISSN- 2248-9533 (Online) Volume 4, Number 2, April-June (2014) 14 fraction of the total power delivered by the source into a surface wave which can be effectively considered as an unwanted power loss since it is ultimately scattered at the dielectric bends and causes degradation of the antenna characteristics. Other problems such as lower gain and lower power handling capacity can be overcome by using an array configuration for the elements which is a collection of homogeneous antennas oriented similarly to get greater directivity and gain in a desired direction. The inset-fed microstrip antenna provides impedance control with a planar feed configuration. Fig 1: Structure of a Microstrip Patch Antenna II. THEORETICAL CONSIDERATIONS A. Parameters of Rectangular microstrip Antenna (RMSA) The parameters of RMSA such as width, effective dielectric constant, effective length, length extension and actual length are shown in equation 1,2,3,4, and 5 respectively. The width of the Microstrip patch antenna is given Bahl and Bhartia [10] as: (1) The expression for εreffis given by Balanis [2] as: (2) Where, - Effective dielectric constant substrate - Dielectric constant of substrate h - Height of dielectric substrate W - Width of the patch (3)
  • 3. International Journal of Electronics and Communication Engineering Research and Development (IJECERD), ISSN 2248-9525(Print), ISSN- 2248-9533 (Online) Volume 4, Number 2, April-June (2014) 15 Actual length of the patch, (4) The effective length of patch is, (5) B. Resonant Input Resistance The equivalent of Rectangular MicrostripAntenna(RMSA) is represented as a parallel combination of conductance G and Reactance B as shown in Fig 2. The values of G and B given below which are based on transmission linemodel expansion. The equivalent admittance of slot #1 Y1=G1+jB1 Since slot #2 is identical to slot #1, its equivalent admittance is Y1=Y2, G1=G2 B1=B2 Fig 2: equivalent circuit transmission-line model for RMPA Conductance at slot #1 is written as G1= (6) The total admittance at slot #1 (input admittance) is obtained by transferring the admittance of slot #2 from the output terminals to input terminals using the admittance transformation equation of transmission lines .the transformed admittance of slot #2 becomes G1- jB1 Therefore the total resonant input admittance is real and is given by Yin= y1+ =2G1
  • 4. International Journal of Electronics and Communication Engineering Research and Development (IJECERD), ISSN 2248-9525(Print), ISSN- 2248-9533 (Online) Volume 4, Number 2, April-June (2014) 16 slots. This can be accomplished by Since the total input admittance is real, the resonant input impedance is also real. Zin= = Rin = (7) The resonant input resistance, as given by (7), does not take into account mutual effects between the Rin(y=0)= (8) The mutual conductance is defined, in terms of the far-zone fields, as G12= (9) WhereJ0 is the Bessel function of the first kind of order zero. The input resistanc e for the inset feed is approximated from [8], [16] ) = Rin(y=0) ) (10) Wherey0 is the feeding point. The minimum value (zero) occurs at the centre of the patch (y0 = L/2)where the voltage is zero and the current is maximum. Now using equation (10), one can calculate the total input impedance of the proposed antenna configuration,from this various antenna parameterscan be calculated. Hence the input impedance of the circuit is Zin = Rin(y=y0). The reflection coefficient ( Ґ ) can be calculated by Ґ= (11) Where Zin is input impedance of RMSA,Zs is impedance of the insertfeed(50 ). The VSWR is basically a measure of the impedance mismatch between the feeding system and the antenna. The higher the VSWR, the greater is the mismatch. (12) The minimum possible value of VSWR is unity for perfect match. The return losses (RL), indicates the amount of power that is transferred to the load and the part of power reflected back. The RL is RL= - 20log│ Ґ│(dB) (13)
  • 5. International Journal of Electronics and Communication Engineering Research and Development (IJECERD), ISSN 2248-9525(Print), ISSN- 2248-9533 (Online) Volume 4, Number 2, April-June (2014) 17 To obtain perfect matching between the feeding system and the antenna, Γ = 0 is required and therefore, from equation (13), RL = infinity. Similarly at Γ = 1, RL = 0 dB. III. DESIGN CONSIDERATION The parameters of Rectangular Microstrip Antenna are computed using Mat Lab as tabulated in table (1). Table - 1 IV. RESULTS AND DISCUSSION The results were obtained by considering an equivalent circuit of RMSA using MATLAB, the various parameters of RMSA are calculated and is shown in figure 3, 4, 5 and 6. From Figure 3, the maximum value occurs at the edge of the slot (y0 = 0) where the voltage is maximum and the current is minimum; typical value of input impedance can vary from 150–350 ohms. From Figure 5, the feeding impedance of RMSA is perfectly matched with the inset feed of 49.98 ohm. 2 2.2 2.4 2.6 2.8 3 3.2 3.4 3.6 x 10 9 200 250 300 350 400 450 X: 2.4e+009 Y: 321.4 frequency in GHZ V/S input impedance frequency in GHZ inputimpedance 0 5 10 15 20 25 30 0 50 100 150 200 250 300 350 X: 15 Y: 0.2845 feeding point inputresistance input resistance v/s feeding point Figure 3: Variation of input impedance Figure 4: Variation of input impedance [Zin] with frequency with feeding point Parameters Values Design frequency 2.4GHz Substrate material FR4 Relative permittivity of the substrate 4.4 Thickness of the dielectric substrate 1.588cm Effective dielectric constant 4.0858 Effective length 30.92cm Extended length 0.7388cm Actual length 29.44cm Width 38.04cm Feeding point 10.44cm
  • 6. International Journal of Electronics and Communication Engineering Research and Development (IJECERD), ISSN 2248-9525(Print), ISSN- 2248-9533 (Online) Volume 4, Number 2, April-June (2014) 18 2 2.2 2.4 2.6 2.8 3 3.2 3.4 3.6 x 10 9 0 20 40 60 80 100 120 140 X: 2.4e+009 Y: 49.98 frequency in GHZ V/S feeding inpedance ohm frequency in GHZ feedingimprdanceinohm Figure 5: Variation of feeding impedence with frequency From fig 6 & 7, it can be seen that the matching is perfect and the value of VSWR are 1 which is close to the ideal value of 1.The return loss is also found to be minimum .At our designed frequency of 2.4 GHz RMSA return loss is minimum found to be -169.4db. 2 2.2 2.4 2.6 2.8 3 3.2 3.4 3.6 x 10 9 0 2 4 6 8 10 12 14 X: 2.4e+009 Y: 1 frequency in GHZ V/S VSWR frequency in GHZ VSWR 2 2.2 2.4 2.6 2.8 3 3.2 3.4 3.6 x 10 9 -180 -160 -140 -120 -100 -80 -60 -40 -20 0 X: 2.4e+009 Y: -169.4 frequency in GHz V/S Return Loss in Db frequency in GHz ReturnlossinDb Figure 6: Variation of VSWR Figure 7: Variation of Return loss versus frequency versus frequency V. CONCLUSION It is therefore concluded that our Rectangular microstrip antenna is perfectly designed at 2.4 Ghz with a Bandwidth of 4.16%. REFERENCES [1] AdilHameed Ahmad and BasimKhalaf Jar‟alla,„Design and Simulation of Broadband Rectangular Microstrip Antenna‟, Eng. Tech. V0l.26, No1. 2008. [2] Antenna theory analysis & design by C.A. Balanis, 2nd Ed., John Wiley & sons, inc. 2005, New York. [3] Sunil Kr. Singh, S. K. Kundu, Ravi Prakash ,N. T Markad, “Microstrip Stacked Patch Antenna for next generation GSM”, IJENGG, Volume 2, November 4, December 2009. [4] H.Legay; L.Shafai, “New stacked microstrip antenna with large band width & high gain”.
  • 7. International Journal of Electronics and Communication Engineering Research and Development (IJECERD), ISSN 2248-9525(Print), ISSN- 2248-9533 (Online) Volume 4, Number 2, April-June (2014) 19 [5] D. Mandal, R. Kar, and A. K. Bhattacharjee , „Input impedance of rectangular microstrip antennas on non-radiating edges for different feed sizes‟ Progress In Electromagnetics Research C, Vol. 1, 191–198 ,2008. [6] ShwetaSrivastava, Babau R, Vishvakarma and J. A. Ansari(2003), „Tunnel Diode loaded Rectangular Microstrip Antenna for Milimeter Range‟, IEEE trans Antenna Propag, Vol.51.NO.4,pp.750-755. [7] S. C. Gao, L. W. Li, M. S. Leong, and T. S. Yeo, „Design and analysis of a novel wideband microstrip antenna‟, in IEEE Antennas and Propagation International Symposium,vol. 1, (Boston, Massachusetts), pp. 90–93, IEEE, July 2001. [8] R. W. Dearnley,A Broadband Transmission Line Model for a Rectangular Microstrip Antenna’, IEEE Trans. , Antennas and propagation, Vol. AP 37, No. 1, pp. 6 - 15, January 1989. [9] M .D .Deshpande, „Input Impedance of Microstrip Antenna" IEEE Trans. , Antennas and propagation‟, Vol. AP 30, No. 4, pp. 645 - 650, July 1982. [10] J. Bahl& P. Bhartia, „Microstrip Antennas‟ Artech House, 1980. [11] K. Rambabu, M. Alam, J. Bornemann and M. A. Stuchly, „Compact Wideband Dual-Polarized Microstrip Patch Antenna’, IEEE. 2004.