SlideShare a Scribd company logo
1 of 6
ECM 521 TECHNICAL REPORT 2011



         Design of a Rectangular Microstrip Patch
                         Antenna
                                                     cost. The selection of microstrip antenna
                                                     technology can fulfill these requirements [3].
   Abstract— Throughout this technical report,       WLAN in the 2.4 GHz band(2.4-2.483 GHz) has
it will briefly describe the design of a             made rapid progress and severalIEEE standards
rectangular patch antenna in free space as           are available namely 802.11a, b, g and j[1].
required aided with special software. The            Various design techniques using defected ground
software used is Computer Simulation                 structure (DGS) in the patch antenna have been
Technology 2011(CST). Based on an ordinary           suggested in previous publications [2-4]. DGS is
patch antenna, the antenna has isolated              realized by etching a defect in the ground plane of
triangle gaps and crossed strip-line gaps etched     planar circuits and antennas. This defect disturbs
on the metal patch and ground plane,                 the shield current distribution in the ground plane
respectively. Demonstrated to have left-handed       and modifies a transmission line such as line
characteristics, the patterned metal patch and       capacitance and inductance characteristics [6].
finite ground plane form a coupled capacitive-       Accordingly, a DGS is able to provide a wide
inductive     circuit     of    negative    index    band-stop characteristic in some frequency bands
metamaterial. It is shown to have great impact       with a reduced number of unit cells. Due to their
on the antenna performance enhancement in            excellent pass and rejection frequency band
terms of the bandwidth significantly broadened       characteristics [6], DGS circuits are widely used
from a few hundred MHz to a few GHz, and             in various active and passive microwave and
also in terms of high efficiency, low loss and       millimeter-wave devices [7]. The purpose of this
low voltage standing wave ratio.Experimental         work is to design and enhance a rectangular
data show a reasonably good agreement                microstrip patch antenna using the parameters
between the simulation and measured results.         given.
This antenna has strong radiation in the
horizontal direction for some specifical
applications within the entire band.The
simulation and results that were going to be             II. METHODOLOGY
discussed in this report was based on the
parameter value given as such that the                   A. Review Stage
frequency is 3(GHz) with the material type of
RT/Duroid 5870 while the value of permittivity       To begin with, the dimensions of the rectangular
is 2.33. Besides that the given value of substrate   patch were calculated using formulae as being
thickness(mm) and copper thickness(mm) is            shown below.The width is critical in terms of
0.508 and 0.035 respectively.                        power        efficiency,     antenna    impedance
                                                     andbandwidth. It is largely dependent on the
                                                     operating      frequency     and    the   substrate
  Keywords—Patch antenna, microstrip, CST,           dielectricconstant. The equation (1) below was
permittivity, fringing effect, return loss           used to work out the width of the patch. Other
                                                     widthscould have been used but if it is too small
                                                     then radiator efficiency will suffer and if it istoo
    I. INTRODUCTION                                  large higher order modes will be excited, resulting
                                                     in field distortions [1, pg-57].
  icrostrip patch antenna antenna used to send
  onboard parameters of article to the ground
Mwhile under operating conditions. such as
Wireless local area networks (WLAN), mobile
and sets require lightweight, small size and low




                                                                                                       1
ECM 521 TECHNICAL REPORT 2011




                                                   To determine the extension of length, we use this
                                                   formula:


                                                                                          (3)


Figure 1 –Front view of the patch




                                                                                  (4)

Figure 2 –Structure of the patch




                       (1)
                                                   The actual length, L of the patch is using the
                                                   following formula:



                                                                                  (5)



The effective dielectric constant due to the air
dielectric boundary is given by:


                                      (2)




                                                                                                  2
ECM 521 TECHNICAL REPORT 2011


    B. Final Stage                              as calculated previously was used to calculate
                                              the value of conductance as shown below;

                                                                                 (7)
                                      (6)




where

                                      (6-a)



                                                0 0 sin      3                   (8)




                                              Where using the asymptotic methods [5] that it
                                              can be shown as following ;



                                              So,

The calculated is then being referred to
APPENDIX : Cosine and Sine Integrals [5].
                                              To find the value of   , we   use equation below;

                                                                                 (9)
Therefore, solve for equation (6) ;




                                                                                 (10)




                                                                                                  3
ECM 521 TECHNICAL REPORT 2011




Using the CST2011 software,                is then
calculated, and the value obtained is 1.5218.



    III. RESULT AND DISCUSSION

The software used to design and simulate the            Figure 4 –the S-parameter diagram
microstrip patch antenna can be used to calculate
                                                               Based on the figure above, the S-
and plot S11 parameters, VSWR, radiation pattern
                                                        parameter is not achieved -10dB which is the ideal
and others.
                                                        magnitude. The return loss for this figure is :
        The figures below were the results on
                                                        20 log10 S11 = -2.6
designing the microstrip patch antenna with the
given specifications.                                            S11 = 0.7413




                                                        Figure 5 –Farfield pattern of the patch


Figure 3 –Top view of the designated patch
                                                                 The patch’s radiation at the fringing field
Scattering parameter ( S- Parameter ) is used to        results in a certain far-field radiation patterns. The
model N-Port linear electrical networks. For N =        figure above shows that the antenna radiates more
1, S-Matrix is [S11] consists of single element. [S11   power in the red area (z-axis) than another
] parameter also known as Reflection Coefficient.       direction. The directivity of this antenna is
It is a complex number that has magnitude and           7.057dBi.The IEEE standard is for an antenna to
phase angle. When magnitude of S11 is expressed         have a -10dB S-parameter magnitude. The
in decibels, is known as return loss at the input       scattering parameter shown above shows that the
and it always in decibels. It can be expressed by:      curve falls at a frequency of 2.98GHz which is
RLinput = 20 log10 |S11| dB                             near enough to 3GHz as given in the specification.
                                                        The nearest to its frequency, the better the
                                                        performance as it has a sharper curve and a lower
                                                        S-parameter magnitude in dB. A lower dB
                                                        indicates the antenna having a greater directivity

                                                                                                            4
ECM 521 TECHNICAL REPORT 2011


and gain.A DGS unit cell is a defect in the ground    Now, the S-Parameter achieved -10dB as the
plane of a physical transmission line be it           minimum ideal of parameter. By formula of return
microstrip, coplanar waveguide or whatever            loss shows before, the return loss is calculated as:
structure where a reference ground plane
conductor exists, which is capable of producing a     20log S11 = -10.98dB
transmission zero in the response of the structure.         S11 = 0.282
The resonant frequency of this transmission zero
depends on the physical dimensions of the defect.     As we compared the value of the return loss
The main advantage of DGS, that it is easier to       before and after done the DGS, the return loss
model and therefore to use in more complex            after is less than before doing the DGS. The
structures. The first DGS structure is the well-      smaller the value of the return loss, the smaller the
known dumbbell shaped DGS, published in 1998          reflected power due to we want the maximum
[8]. The use of a DGS (slot in the ground plane)      power transferred. So when there are less loss in
allows the apparition of a stop band controlled by    the antenna, it will achieve best performance of
tuning the dimensions of the slot. The ground         radiation and high gain as well.
plate which has a strong E-Field is cut away in
order to get the better bandwidth.




                                                      Figure 9 –Farfield pattern after DGS



                                                          IV. CONCLUSION
Figure 7 –E-field resulted after DGS
                                                              From the analysis as above, it can be
                                                      concluded that the greater substrate thickness will
                                                      get a greater gain and directivity. The results
                                                      demonstrated that the radiation properties of the
                                                      antenna with DGS is better performance than the
                                                      antenna without DGS as the S-parameter is
                                                      measured to below than -10dB. It is also shown
                                                      that DGS have an effectto the performance of the
                                                      antenna characteristics.As the dielectric constant
                                                      of the substrate increase, the antenna bandwidth
                                                      decrease and therefore decrease the impedance
                                                      bandwidth.


Figure 8 –The S-parameter after DGS




                                                                                                         5
ECM 521 TECHNICAL REPORT 2011


    V. RECOMMENDATIONS                                 Suppression For Microstrip Patch Antennas”,
                                                       Microwave and Optical Technology Letters, pp.
    Microstrip patch antennas radiate primarily        103-105 Vol. 49, No. 1, January 2007.
because of the fringing fields between the patch
edge and the ground plane. For a good                  [3] Haiwen Liu, Zhengfan Li, Xiaowei Sun, and
performance of antenna, a thick dielectric             Junfa, “Harmonic Suppression With Photonic
substrate having a low dielectric constant is          Bandgap and Defected Ground Structure for a
necessary since it provides larger bandwidth,
                                                       Microstrip Patch Antenna”, IEEE Microwave and
better radiation and better efficiency. However, it
                                                       Wireless Components Letters, VOL. 15, NO. 2,
leads to a larger antenna size. In order to reduce
the size of the Microstrip patch antenna, substrates   Feb. 2005.
with higher dielectric constants must be used
                                                       [4] Y. J. Sung, M. Kim, and Y.-S. Kim,
which are less efficient and result in narrow
bandwidth. Hence a trade-off must be realized          “Harmonics Reduction With Defected Ground
between the antenna performance and antenna            Structure for a Microstrip Patch Antenna”, IEEE
dimensions                                             Antennas and Wireless Propagation Letters, VOL.
                                                       2, 2003.

                                                       [5] Constantine A. Balanis, “Antenna Theory Analysis
                                                       And Design”, 3rdedition , page 811-842
    VI. ACKNOWLEDGMENT
                                                       [6] D. Ahn, J. S. Park, C. S. Kim, J. Kim, Y. Qian,
        In the name of Allah s.w.t and He most
                                                       and T. Itoh, “A design of the low-pass filter using
 merciful with Salawat and salam to prophet
 Muhammad s.a.w, Alhamdulillah thanks to Him           the novel microstrip defected ground structure,”
 with the help and His permission giving us the        IEEE Trans. Microwave Theory Tech., vol. 49,
 idea and health, also the opportunity to              pp. 86–93, Jan. 2001.
 successfully completed this project entitled
 “Design of A Rectangular Patch Antenna Using          [7] C. S. Kim, J. S. Park, D. Ahn, and J. B. Lim,
 CST”for Computer Engineering System Design            “A novel 1-D periodic defected ground structure
 subject within the given time duration.               for planar circuits,” IEEE Microwave Guided
                                                       Wave Lett., vol. 10, pp. 131–133, Apr.2000.
        Here, we would to express our great
 thankful wishes to all of those who have been
                                                       [8] J. I. Park, C. S. Kim, J. Kim, J. S. Park, Y.
 very supporting and helpful to us especially our
 Antenna and Propagation lecturer, Pn.Nor              Qian, D. Ahn, and T. Itoh,―Modeling of a
 Hasimah Baba for her guidance, advices,and            photonic bandgap and its application for the low-
 monitoring us to complete this project. Special       pass filter design,‖ Proceedings of Asia Pacific
 thanks also to all classmates of EE2405A and          Microw. Conf. (APMC), pp. 331–334, Singapore
 other friends who are involved directly or            1999.
 indirectly to accomplish this task. The full and
 kindness of support, attention, time and advises
 gives a full memories to me.




    VII.        REFERENCES

[1] Bahl, I. J and Bhartia, P; “Microstrip
Antennas”, Artech House, 1980.

[2] M. K. Mandal, P. Mondal, S. Sanyal, and A.
Chakrabarty , “An Improved Design Of Harmonic

                                                                                                         6

More Related Content

What's hot

Microstrip patch antenna using hfss
Microstrip patch antenna using hfssMicrostrip patch antenna using hfss
Microstrip patch antenna using hfssmahendra v
 
Microstrip patch-antenna
Microstrip patch-antennaMicrostrip patch-antenna
Microstrip patch-antennaBablu Singh
 
Horn antenna
Horn antenna Horn antenna
Horn antenna Jiten Thapa
 
Mobile Phone Antenna Design
Mobile Phone Antenna Design Mobile Phone Antenna Design
Mobile Phone Antenna Design 5aleed90
 
A Multi-band Slot Antenna for GPS
A Multi-band Slot Antenna for   GPSA Multi-band Slot Antenna for   GPS
A Multi-band Slot Antenna for GPSom prakash
 
Dual Band Microstrip Antenna
Dual Band Microstrip AntennaDual Band Microstrip Antenna
Dual Band Microstrip AntennaAnas Kadri
 
Schelkunoff Polynomial Method for Antenna Synthesis
Schelkunoff Polynomial Method for Antenna SynthesisSchelkunoff Polynomial Method for Antenna Synthesis
Schelkunoff Polynomial Method for Antenna SynthesisSwapnil Bangera
 
Whip antenna
Whip antennaWhip antenna
Whip antennaNiaz Shaikh
 
microwave-tubes
 microwave-tubes microwave-tubes
microwave-tubesATTO RATHORE
 
Microstripline
MicrostriplineMicrostripline
MicrostriplineAysu COSKUN
 
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
 
Directional couplers 22
Directional couplers 22Directional couplers 22
Directional couplers 22HIMANSHU DIWAKAR
 
Aperture antennas
Aperture antennasAperture antennas
Aperture antennasGopinathD17
 
Fractal Antenna
Fractal AntennaFractal Antenna
Fractal AntennaJay Patel
 
Microwave measurement
Microwave measurementMicrowave measurement
Microwave measurementShankar Gangaju
 
Millimeter wave circular microstrip Patch antenna for 5 g applications
Millimeter wave circular microstrip Patch antenna for 5 g applicationsMillimeter wave circular microstrip Patch antenna for 5 g applications
Millimeter wave circular microstrip Patch antenna for 5 g applicationsGana U Kumar
 
Broadband antennas
Broadband antennasBroadband antennas
Broadband antennasAJAL A J
 
Bandwidth enhancement patch antenna
Bandwidth enhancement patch antennaBandwidth enhancement patch antenna
Bandwidth enhancement patch antennaAnurag Anupam
 

What's hot (20)

Microstrip patch antenna using hfss
Microstrip patch antenna using hfssMicrostrip patch antenna using hfss
Microstrip patch antenna using hfss
 
Microstrip patch-antenna
Microstrip patch-antennaMicrostrip patch-antenna
Microstrip patch-antenna
 
Horn antenna
Horn antenna Horn antenna
Horn antenna
 
Mobile Phone Antenna Design
Mobile Phone Antenna Design Mobile Phone Antenna Design
Mobile Phone Antenna Design
 
A Multi-band Slot Antenna for GPS
A Multi-band Slot Antenna for   GPSA Multi-band Slot Antenna for   GPS
A Multi-band Slot Antenna for GPS
 
Dual Band Microstrip Antenna
Dual Band Microstrip AntennaDual Band Microstrip Antenna
Dual Band Microstrip Antenna
 
Helical antenna
Helical antennaHelical antenna
Helical antenna
 
Power Divider
Power DividerPower Divider
Power Divider
 
Schelkunoff Polynomial Method for Antenna Synthesis
Schelkunoff Polynomial Method for Antenna SynthesisSchelkunoff Polynomial Method for Antenna Synthesis
Schelkunoff Polynomial Method for Antenna Synthesis
 
Whip antenna
Whip antennaWhip antenna
Whip antenna
 
microwave-tubes
 microwave-tubes microwave-tubes
microwave-tubes
 
Microstripline
MicrostriplineMicrostripline
Microstripline
 
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
 
Directional couplers 22
Directional couplers 22Directional couplers 22
Directional couplers 22
 
Aperture antennas
Aperture antennasAperture antennas
Aperture antennas
 
Fractal Antenna
Fractal AntennaFractal Antenna
Fractal Antenna
 
Microwave measurement
Microwave measurementMicrowave measurement
Microwave measurement
 
Millimeter wave circular microstrip Patch antenna for 5 g applications
Millimeter wave circular microstrip Patch antenna for 5 g applicationsMillimeter wave circular microstrip Patch antenna for 5 g applications
Millimeter wave circular microstrip Patch antenna for 5 g applications
 
Broadband antennas
Broadband antennasBroadband antennas
Broadband antennas
 
Bandwidth enhancement patch antenna
Bandwidth enhancement patch antennaBandwidth enhancement patch antenna
Bandwidth enhancement patch antenna
 

Similar to ECM 521 Rectangular Microstrip Patch Antenna Design

IRJET- Design of Mid-Band Frequency Patch Antenna for 5G Applications
IRJET- Design of Mid-Band Frequency Patch Antenna for 5G ApplicationsIRJET- Design of Mid-Band Frequency Patch Antenna for 5G Applications
IRJET- Design of Mid-Band Frequency Patch Antenna for 5G ApplicationsIRJET Journal
 
Microstrip v-slot-patch-antenna-using-an-h-slot-defected-ground-structure-dgs
Microstrip v-slot-patch-antenna-using-an-h-slot-defected-ground-structure-dgsMicrostrip v-slot-patch-antenna-using-an-h-slot-defected-ground-structure-dgs
Microstrip v-slot-patch-antenna-using-an-h-slot-defected-ground-structure-dgsRammohan Mudgal
 
A CPW-fed Rectangular Patch Antenna for WLAN/WiMAX Applications
A CPW-fed Rectangular Patch Antenna for WLAN/WiMAX ApplicationsA CPW-fed Rectangular Patch Antenna for WLAN/WiMAX Applications
A CPW-fed Rectangular Patch Antenna for WLAN/WiMAX ApplicationsIDES Editor
 
Octagonal Fractal Antenna for 5 GHz Band: Modelling and Evaluations
Octagonal Fractal Antenna for 5 GHz Band: Modelling and EvaluationsOctagonal Fractal Antenna for 5 GHz Band: Modelling and Evaluations
Octagonal Fractal Antenna for 5 GHz Band: Modelling and EvaluationsIRJET Journal
 
Multiband Circular Microstrip Patch Antenna for WLAN Application
	Multiband Circular Microstrip Patch Antenna for WLAN Application	Multiband Circular Microstrip Patch Antenna for WLAN Application
Multiband Circular Microstrip Patch Antenna for WLAN Applicationtheijes
 
Artificial intelligence in the design of microstrip antenna
Artificial intelligence in the design of microstrip antennaArtificial intelligence in the design of microstrip antenna
Artificial intelligence in the design of microstrip antennaRaj Kumar Thenua
 
Novel fractal antenna for UWB applications using the coplanar waveguide feed ...
Novel fractal antenna for UWB applications using the coplanar waveguide feed ...Novel fractal antenna for UWB applications using the coplanar waveguide feed ...
Novel fractal antenna for UWB applications using the coplanar waveguide feed ...IJECEIAES
 
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
 
Gm3112421245
Gm3112421245Gm3112421245
Gm3112421245IJERA Editor
 
IRJET- A CPW Feed UWB Antenna with Quad Band Notches
IRJET- A CPW Feed UWB Antenna with Quad Band NotchesIRJET- A CPW Feed UWB Antenna with Quad Band Notches
IRJET- A CPW Feed UWB Antenna with Quad Band NotchesIRJET Journal
 
Rader communication.pdf
Rader communication.pdfRader communication.pdf
Rader communication.pdfMDPiasKhan
 
Gain enhancement of microstrip patch antenna using artificial magnetic conductor
Gain enhancement of microstrip patch antenna using artificial magnetic conductorGain enhancement of microstrip patch antenna using artificial magnetic conductor
Gain enhancement of microstrip patch antenna using artificial magnetic conductorjournalBEEI
 
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
 
IRJET- Design of Phased Array Antenna for Beam Forming Applications using...
IRJET-  	  Design of Phased Array Antenna for Beam Forming Applications using...IRJET-  	  Design of Phased Array Antenna for Beam Forming Applications using...
IRJET- Design of Phased Array Antenna for Beam Forming Applications using...IRJET Journal
 
IRJET - 2Ă—2 Compact Multi-Band MIMO Antenna with Bandwidth Enhancement
IRJET  - 2Ă—2 Compact Multi-Band MIMO Antenna with Bandwidth EnhancementIRJET  - 2Ă—2 Compact Multi-Band MIMO Antenna with Bandwidth Enhancement
IRJET - 2Ă—2 Compact Multi-Band MIMO Antenna with Bandwidth EnhancementIRJET Journal
 
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
 
Paper id 27201432
Paper id 27201432Paper id 27201432
Paper id 27201432IJRAT
 
Dv31587594
Dv31587594Dv31587594
Dv31587594IJMER
 
Research Inventy : International Journal of Engineering and Science is publis...
Research Inventy : International Journal of Engineering and Science is publis...Research Inventy : International Journal of Engineering and Science is publis...
Research Inventy : International Journal of Engineering and Science is publis...researchinventy
 

Similar to ECM 521 Rectangular Microstrip Patch Antenna Design (20)

IRJET- Design of Mid-Band Frequency Patch Antenna for 5G Applications
IRJET- Design of Mid-Band Frequency Patch Antenna for 5G ApplicationsIRJET- Design of Mid-Band Frequency Patch Antenna for 5G Applications
IRJET- Design of Mid-Band Frequency Patch Antenna for 5G Applications
 
Microstrip v-slot-patch-antenna-using-an-h-slot-defected-ground-structure-dgs
Microstrip v-slot-patch-antenna-using-an-h-slot-defected-ground-structure-dgsMicrostrip v-slot-patch-antenna-using-an-h-slot-defected-ground-structure-dgs
Microstrip v-slot-patch-antenna-using-an-h-slot-defected-ground-structure-dgs
 
A CPW-fed Rectangular Patch Antenna for WLAN/WiMAX Applications
A CPW-fed Rectangular Patch Antenna for WLAN/WiMAX ApplicationsA CPW-fed Rectangular Patch Antenna for WLAN/WiMAX Applications
A CPW-fed Rectangular Patch Antenna for WLAN/WiMAX Applications
 
Octagonal Fractal Antenna for 5 GHz Band: Modelling and Evaluations
Octagonal Fractal Antenna for 5 GHz Band: Modelling and EvaluationsOctagonal Fractal Antenna for 5 GHz Band: Modelling and Evaluations
Octagonal Fractal Antenna for 5 GHz Band: Modelling and Evaluations
 
Multiband Circular Microstrip Patch Antenna for WLAN Application
	Multiband Circular Microstrip Patch Antenna for WLAN Application	Multiband Circular Microstrip Patch Antenna for WLAN Application
Multiband Circular Microstrip Patch Antenna for WLAN Application
 
Artificial intelligence in the design of microstrip antenna
Artificial intelligence in the design of microstrip antennaArtificial intelligence in the design of microstrip antenna
Artificial intelligence in the design of microstrip antenna
 
Novel fractal antenna for UWB applications using the coplanar waveguide feed ...
Novel fractal antenna for UWB applications using the coplanar waveguide feed ...Novel fractal antenna for UWB applications using the coplanar waveguide feed ...
Novel fractal antenna for UWB applications using the coplanar waveguide feed ...
 
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...
 
Gm3112421245
Gm3112421245Gm3112421245
Gm3112421245
 
IRJET- A CPW Feed UWB Antenna with Quad Band Notches
IRJET- A CPW Feed UWB Antenna with Quad Band NotchesIRJET- A CPW Feed UWB Antenna with Quad Band Notches
IRJET- A CPW Feed UWB Antenna with Quad Band Notches
 
Ce35461464
Ce35461464Ce35461464
Ce35461464
 
Rader communication.pdf
Rader communication.pdfRader communication.pdf
Rader communication.pdf
 
Gain enhancement of microstrip patch antenna using artificial magnetic conductor
Gain enhancement of microstrip patch antenna using artificial magnetic conductorGain enhancement of microstrip patch antenna using artificial magnetic conductor
Gain enhancement of microstrip patch antenna using artificial magnetic conductor
 
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
 
IRJET- Design of Phased Array Antenna for Beam Forming Applications using...
IRJET-  	  Design of Phased Array Antenna for Beam Forming Applications using...IRJET-  	  Design of Phased Array Antenna for Beam Forming Applications using...
IRJET- Design of Phased Array Antenna for Beam Forming Applications using...
 
IRJET - 2Ă—2 Compact Multi-Band MIMO Antenna with Bandwidth Enhancement
IRJET  - 2Ă—2 Compact Multi-Band MIMO Antenna with Bandwidth EnhancementIRJET  - 2Ă—2 Compact Multi-Band MIMO Antenna with Bandwidth Enhancement
IRJET - 2Ă—2 Compact Multi-Band MIMO Antenna with Bandwidth Enhancement
 
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
 
Paper id 27201432
Paper id 27201432Paper id 27201432
Paper id 27201432
 
Dv31587594
Dv31587594Dv31587594
Dv31587594
 
Research Inventy : International Journal of Engineering and Science is publis...
Research Inventy : International Journal of Engineering and Science is publis...Research Inventy : International Journal of Engineering and Science is publis...
Research Inventy : International Journal of Engineering and Science is publis...
 

More from Azlin lolin

Conical horn antenna with parabolic reflector using cst
Conical horn antenna with parabolic reflector using cstConical horn antenna with parabolic reflector using cst
Conical horn antenna with parabolic reflector using cstAzlin lolin
 
Engineers in society
Engineers in societyEngineers in society
Engineers in societyAzlin lolin
 
nilai2 islam dlm agama lain
nilai2 islam dlm agama lainnilai2 islam dlm agama lain
nilai2 islam dlm agama lainAzlin lolin
 
A better tomorrow
A better tomorrowA better tomorrow
A better tomorrowAzlin lolin
 
humidity sensor project
humidity sensor projecthumidity sensor project
humidity sensor projectAzlin lolin
 
Dato bahaman intro
Dato bahaman introDato bahaman intro
Dato bahaman introAzlin lolin
 
Control capacitive measurement
Control capacitive measurementControl capacitive measurement
Control capacitive measurementAzlin lolin
 
Capacitive sensor
Capacitive sensorCapacitive sensor
Capacitive sensorAzlin lolin
 
Cdma : mobile
Cdma : mobileCdma : mobile
Cdma : mobileAzlin lolin
 

More from Azlin lolin (11)

Conical horn antenna with parabolic reflector using cst
Conical horn antenna with parabolic reflector using cstConical horn antenna with parabolic reflector using cst
Conical horn antenna with parabolic reflector using cst
 
Engineers in society
Engineers in societyEngineers in society
Engineers in society
 
nilai2 islam dlm agama lain
nilai2 islam dlm agama lainnilai2 islam dlm agama lain
nilai2 islam dlm agama lain
 
A better tomorrow
A better tomorrowA better tomorrow
A better tomorrow
 
humidity sensor project
humidity sensor projecthumidity sensor project
humidity sensor project
 
Burst
BurstBurst
Burst
 
Ese563
Ese563 Ese563
Ese563
 
Dato bahaman intro
Dato bahaman introDato bahaman intro
Dato bahaman intro
 
Control capacitive measurement
Control capacitive measurementControl capacitive measurement
Control capacitive measurement
 
Capacitive sensor
Capacitive sensorCapacitive sensor
Capacitive sensor
 
Cdma : mobile
Cdma : mobileCdma : mobile
Cdma : mobile
 

Recently uploaded

CARE OF CHILD IN INCUBATOR..........pptx
CARE OF CHILD IN INCUBATOR..........pptxCARE OF CHILD IN INCUBATOR..........pptx
CARE OF CHILD IN INCUBATOR..........pptxGaneshChakor2
 
Disha NEET Physics Guide for classes 11 and 12.pdf
Disha NEET Physics Guide for classes 11 and 12.pdfDisha NEET Physics Guide for classes 11 and 12.pdf
Disha NEET Physics Guide for classes 11 and 12.pdfchloefrazer622
 
Z Score,T Score, Percential Rank and Box Plot Graph
Z Score,T Score, Percential Rank and Box Plot GraphZ Score,T Score, Percential Rank and Box Plot Graph
Z Score,T Score, Percential Rank and Box Plot GraphThiyagu K
 
Separation of Lanthanides/ Lanthanides and Actinides
Separation of Lanthanides/ Lanthanides and ActinidesSeparation of Lanthanides/ Lanthanides and Actinides
Separation of Lanthanides/ Lanthanides and ActinidesFatimaKhan178732
 
BASLIQ CURRENT LOOKBOOK LOOKBOOK(1) (1).pdf
BASLIQ CURRENT LOOKBOOK  LOOKBOOK(1) (1).pdfBASLIQ CURRENT LOOKBOOK  LOOKBOOK(1) (1).pdf
BASLIQ CURRENT LOOKBOOK LOOKBOOK(1) (1).pdfSoniaTolstoy
 
1029 - Danh muc Sach Giao Khoa 10 . pdf
1029 -  Danh muc Sach Giao Khoa 10 . pdf1029 -  Danh muc Sach Giao Khoa 10 . pdf
1029 - Danh muc Sach Giao Khoa 10 . pdfQucHHunhnh
 
Nutritional Needs Presentation - HLTH 104
Nutritional Needs Presentation - HLTH 104Nutritional Needs Presentation - HLTH 104
Nutritional Needs Presentation - HLTH 104misteraugie
 
1029-Danh muc Sach Giao Khoa khoi 6.pdf
1029-Danh muc Sach Giao Khoa khoi  6.pdf1029-Danh muc Sach Giao Khoa khoi  6.pdf
1029-Danh muc Sach Giao Khoa khoi 6.pdfQucHHunhnh
 
The Most Excellent Way | 1 Corinthians 13
The Most Excellent Way | 1 Corinthians 13The Most Excellent Way | 1 Corinthians 13
The Most Excellent Way | 1 Corinthians 13Steve Thomason
 
Mastering the Unannounced Regulatory Inspection
Mastering the Unannounced Regulatory InspectionMastering the Unannounced Regulatory Inspection
Mastering the Unannounced Regulatory InspectionSafetyChain Software
 
Russian Call Girls in Andheri Airport Mumbai WhatsApp 9167673311 đź’ž Full Nigh...
Russian Call Girls in Andheri Airport Mumbai WhatsApp  9167673311 đź’ž Full Nigh...Russian Call Girls in Andheri Airport Mumbai WhatsApp  9167673311 đź’ž Full Nigh...
Russian Call Girls in Andheri Airport Mumbai WhatsApp 9167673311 đź’ž Full Nigh...Pooja Nehwal
 
Software Engineering Methodologies (overview)
Software Engineering Methodologies (overview)Software Engineering Methodologies (overview)
Software Engineering Methodologies (overview)eniolaolutunde
 
mini mental status format.docx
mini    mental       status     format.docxmini    mental       status     format.docx
mini mental status format.docxPoojaSen20
 
Accessible design: Minimum effort, maximum impact
Accessible design: Minimum effort, maximum impactAccessible design: Minimum effort, maximum impact
Accessible design: Minimum effort, maximum impactdawncurless
 
Web & Social Media Analytics Previous Year Question Paper.pdf
Web & Social Media Analytics Previous Year Question Paper.pdfWeb & Social Media Analytics Previous Year Question Paper.pdf
Web & Social Media Analytics Previous Year Question Paper.pdfJayanti Pande
 
Sanyam Choudhary Chemistry practical.pdf
Sanyam Choudhary Chemistry practical.pdfSanyam Choudhary Chemistry practical.pdf
Sanyam Choudhary Chemistry practical.pdfsanyamsingh5019
 
Arihant handbook biology for class 11 .pdf
Arihant handbook biology for class 11 .pdfArihant handbook biology for class 11 .pdf
Arihant handbook biology for class 11 .pdfchloefrazer622
 
Ecosystem Interactions Class Discussion Presentation in Blue Green Lined Styl...
Ecosystem Interactions Class Discussion Presentation in Blue Green Lined Styl...Ecosystem Interactions Class Discussion Presentation in Blue Green Lined Styl...
Ecosystem Interactions Class Discussion Presentation in Blue Green Lined Styl...fonyou31
 
Student login on Anyboli platform.helpin
Student login on Anyboli platform.helpinStudent login on Anyboli platform.helpin
Student login on Anyboli platform.helpinRaunakKeshri1
 

Recently uploaded (20)

CARE OF CHILD IN INCUBATOR..........pptx
CARE OF CHILD IN INCUBATOR..........pptxCARE OF CHILD IN INCUBATOR..........pptx
CARE OF CHILD IN INCUBATOR..........pptx
 
Disha NEET Physics Guide for classes 11 and 12.pdf
Disha NEET Physics Guide for classes 11 and 12.pdfDisha NEET Physics Guide for classes 11 and 12.pdf
Disha NEET Physics Guide for classes 11 and 12.pdf
 
Z Score,T Score, Percential Rank and Box Plot Graph
Z Score,T Score, Percential Rank and Box Plot GraphZ Score,T Score, Percential Rank and Box Plot Graph
Z Score,T Score, Percential Rank and Box Plot Graph
 
Separation of Lanthanides/ Lanthanides and Actinides
Separation of Lanthanides/ Lanthanides and ActinidesSeparation of Lanthanides/ Lanthanides and Actinides
Separation of Lanthanides/ Lanthanides and Actinides
 
BASLIQ CURRENT LOOKBOOK LOOKBOOK(1) (1).pdf
BASLIQ CURRENT LOOKBOOK  LOOKBOOK(1) (1).pdfBASLIQ CURRENT LOOKBOOK  LOOKBOOK(1) (1).pdf
BASLIQ CURRENT LOOKBOOK LOOKBOOK(1) (1).pdf
 
1029 - Danh muc Sach Giao Khoa 10 . pdf
1029 -  Danh muc Sach Giao Khoa 10 . pdf1029 -  Danh muc Sach Giao Khoa 10 . pdf
1029 - Danh muc Sach Giao Khoa 10 . pdf
 
Nutritional Needs Presentation - HLTH 104
Nutritional Needs Presentation - HLTH 104Nutritional Needs Presentation - HLTH 104
Nutritional Needs Presentation - HLTH 104
 
1029-Danh muc Sach Giao Khoa khoi 6.pdf
1029-Danh muc Sach Giao Khoa khoi  6.pdf1029-Danh muc Sach Giao Khoa khoi  6.pdf
1029-Danh muc Sach Giao Khoa khoi 6.pdf
 
The Most Excellent Way | 1 Corinthians 13
The Most Excellent Way | 1 Corinthians 13The Most Excellent Way | 1 Corinthians 13
The Most Excellent Way | 1 Corinthians 13
 
Mastering the Unannounced Regulatory Inspection
Mastering the Unannounced Regulatory InspectionMastering the Unannounced Regulatory Inspection
Mastering the Unannounced Regulatory Inspection
 
Russian Call Girls in Andheri Airport Mumbai WhatsApp 9167673311 đź’ž Full Nigh...
Russian Call Girls in Andheri Airport Mumbai WhatsApp  9167673311 đź’ž Full Nigh...Russian Call Girls in Andheri Airport Mumbai WhatsApp  9167673311 đź’ž Full Nigh...
Russian Call Girls in Andheri Airport Mumbai WhatsApp 9167673311 đź’ž Full Nigh...
 
Software Engineering Methodologies (overview)
Software Engineering Methodologies (overview)Software Engineering Methodologies (overview)
Software Engineering Methodologies (overview)
 
mini mental status format.docx
mini    mental       status     format.docxmini    mental       status     format.docx
mini mental status format.docx
 
Accessible design: Minimum effort, maximum impact
Accessible design: Minimum effort, maximum impactAccessible design: Minimum effort, maximum impact
Accessible design: Minimum effort, maximum impact
 
Web & Social Media Analytics Previous Year Question Paper.pdf
Web & Social Media Analytics Previous Year Question Paper.pdfWeb & Social Media Analytics Previous Year Question Paper.pdf
Web & Social Media Analytics Previous Year Question Paper.pdf
 
Sanyam Choudhary Chemistry practical.pdf
Sanyam Choudhary Chemistry practical.pdfSanyam Choudhary Chemistry practical.pdf
Sanyam Choudhary Chemistry practical.pdf
 
CĂłdigo Creativo y Arte de Software | Unidad 1
CĂłdigo Creativo y Arte de Software | Unidad 1CĂłdigo Creativo y Arte de Software | Unidad 1
CĂłdigo Creativo y Arte de Software | Unidad 1
 
Arihant handbook biology for class 11 .pdf
Arihant handbook biology for class 11 .pdfArihant handbook biology for class 11 .pdf
Arihant handbook biology for class 11 .pdf
 
Ecosystem Interactions Class Discussion Presentation in Blue Green Lined Styl...
Ecosystem Interactions Class Discussion Presentation in Blue Green Lined Styl...Ecosystem Interactions Class Discussion Presentation in Blue Green Lined Styl...
Ecosystem Interactions Class Discussion Presentation in Blue Green Lined Styl...
 
Student login on Anyboli platform.helpin
Student login on Anyboli platform.helpinStudent login on Anyboli platform.helpin
Student login on Anyboli platform.helpin
 

ECM 521 Rectangular Microstrip Patch Antenna Design

  • 1. ECM 521 TECHNICAL REPORT 2011 Design of a Rectangular Microstrip Patch Antenna cost. The selection of microstrip antenna technology can fulfill these requirements [3]. Abstract— Throughout this technical report, WLAN in the 2.4 GHz band(2.4-2.483 GHz) has it will briefly describe the design of a made rapid progress and severalIEEE standards rectangular patch antenna in free space as are available namely 802.11a, b, g and j[1]. required aided with special software. The Various design techniques using defected ground software used is Computer Simulation structure (DGS) in the patch antenna have been Technology 2011(CST). Based on an ordinary suggested in previous publications [2-4]. DGS is patch antenna, the antenna has isolated realized by etching a defect in the ground plane of triangle gaps and crossed strip-line gaps etched planar circuits and antennas. This defect disturbs on the metal patch and ground plane, the shield current distribution in the ground plane respectively. Demonstrated to have left-handed and modifies a transmission line such as line characteristics, the patterned metal patch and capacitance and inductance characteristics [6]. finite ground plane form a coupled capacitive- Accordingly, a DGS is able to provide a wide inductive circuit of negative index band-stop characteristic in some frequency bands metamaterial. It is shown to have great impact with a reduced number of unit cells. Due to their on the antenna performance enhancement in excellent pass and rejection frequency band terms of the bandwidth significantly broadened characteristics [6], DGS circuits are widely used from a few hundred MHz to a few GHz, and in various active and passive microwave and also in terms of high efficiency, low loss and millimeter-wave devices [7]. The purpose of this low voltage standing wave ratio.Experimental work is to design and enhance a rectangular data show a reasonably good agreement microstrip patch antenna using the parameters between the simulation and measured results. given. This antenna has strong radiation in the horizontal direction for some specifical applications within the entire band.The simulation and results that were going to be II. METHODOLOGY discussed in this report was based on the parameter value given as such that the A. Review Stage frequency is 3(GHz) with the material type of RT/Duroid 5870 while the value of permittivity To begin with, the dimensions of the rectangular is 2.33. Besides that the given value of substrate patch were calculated using formulae as being thickness(mm) and copper thickness(mm) is shown below.The width is critical in terms of 0.508 and 0.035 respectively. power efficiency, antenna impedance andbandwidth. It is largely dependent on the operating frequency and the substrate Keywords—Patch antenna, microstrip, CST, dielectricconstant. The equation (1) below was permittivity, fringing effect, return loss used to work out the width of the patch. Other widthscould have been used but if it is too small then radiator efficiency will suffer and if it istoo I. INTRODUCTION large higher order modes will be excited, resulting in field distortions [1, pg-57]. icrostrip patch antenna antenna used to send onboard parameters of article to the ground Mwhile under operating conditions. such as Wireless local area networks (WLAN), mobile and sets require lightweight, small size and low 1
  • 2. ECM 521 TECHNICAL REPORT 2011 To determine the extension of length, we use this formula: (3) Figure 1 –Front view of the patch (4) Figure 2 –Structure of the patch (1) The actual length, L of the patch is using the following formula: (5) The effective dielectric constant due to the air dielectric boundary is given by: (2) 2
  • 3. ECM 521 TECHNICAL REPORT 2011 B. Final Stage as calculated previously was used to calculate the value of conductance as shown below; (7) (6) where (6-a) 0 0 sin 3 (8) Where using the asymptotic methods [5] that it can be shown as following ; So, The calculated is then being referred to APPENDIX : Cosine and Sine Integrals [5]. To find the value of , we use equation below; (9) Therefore, solve for equation (6) ; (10) 3
  • 4. ECM 521 TECHNICAL REPORT 2011 Using the CST2011 software, is then calculated, and the value obtained is 1.5218. III. RESULT AND DISCUSSION The software used to design and simulate the Figure 4 –the S-parameter diagram microstrip patch antenna can be used to calculate Based on the figure above, the S- and plot S11 parameters, VSWR, radiation pattern parameter is not achieved -10dB which is the ideal and others. magnitude. The return loss for this figure is : The figures below were the results on 20 log10 S11 = -2.6 designing the microstrip patch antenna with the given specifications. S11 = 0.7413 Figure 5 –Farfield pattern of the patch Figure 3 –Top view of the designated patch The patch’s radiation at the fringing field Scattering parameter ( S- Parameter ) is used to results in a certain far-field radiation patterns. The model N-Port linear electrical networks. For N = figure above shows that the antenna radiates more 1, S-Matrix is [S11] consists of single element. [S11 power in the red area (z-axis) than another ] parameter also known as Reflection Coefficient. direction. The directivity of this antenna is It is a complex number that has magnitude and 7.057dBi.The IEEE standard is for an antenna to phase angle. When magnitude of S11 is expressed have a -10dB S-parameter magnitude. The in decibels, is known as return loss at the input scattering parameter shown above shows that the and it always in decibels. It can be expressed by: curve falls at a frequency of 2.98GHz which is RLinput = 20 log10 |S11| dB near enough to 3GHz as given in the specification. The nearest to its frequency, the better the performance as it has a sharper curve and a lower S-parameter magnitude in dB. A lower dB indicates the antenna having a greater directivity 4
  • 5. ECM 521 TECHNICAL REPORT 2011 and gain.A DGS unit cell is a defect in the ground Now, the S-Parameter achieved -10dB as the plane of a physical transmission line be it minimum ideal of parameter. By formula of return microstrip, coplanar waveguide or whatever loss shows before, the return loss is calculated as: structure where a reference ground plane conductor exists, which is capable of producing a 20log S11 = -10.98dB transmission zero in the response of the structure. S11 = 0.282 The resonant frequency of this transmission zero depends on the physical dimensions of the defect. As we compared the value of the return loss The main advantage of DGS, that it is easier to before and after done the DGS, the return loss model and therefore to use in more complex after is less than before doing the DGS. The structures. The first DGS structure is the well- smaller the value of the return loss, the smaller the known dumbbell shaped DGS, published in 1998 reflected power due to we want the maximum [8]. The use of a DGS (slot in the ground plane) power transferred. So when there are less loss in allows the apparition of a stop band controlled by the antenna, it will achieve best performance of tuning the dimensions of the slot. The ground radiation and high gain as well. plate which has a strong E-Field is cut away in order to get the better bandwidth. Figure 9 –Farfield pattern after DGS IV. CONCLUSION Figure 7 –E-field resulted after DGS From the analysis as above, it can be concluded that the greater substrate thickness will get a greater gain and directivity. The results demonstrated that the radiation properties of the antenna with DGS is better performance than the antenna without DGS as the S-parameter is measured to below than -10dB. It is also shown that DGS have an effectto the performance of the antenna characteristics.As the dielectric constant of the substrate increase, the antenna bandwidth decrease and therefore decrease the impedance bandwidth. Figure 8 –The S-parameter after DGS 5
  • 6. ECM 521 TECHNICAL REPORT 2011 V. RECOMMENDATIONS Suppression For Microstrip Patch Antennas”, Microwave and Optical Technology Letters, pp. Microstrip patch antennas radiate primarily 103-105 Vol. 49, No. 1, January 2007. because of the fringing fields between the patch edge and the ground plane. For a good [3] Haiwen Liu, Zhengfan Li, Xiaowei Sun, and performance of antenna, a thick dielectric Junfa, “Harmonic Suppression With Photonic substrate having a low dielectric constant is Bandgap and Defected Ground Structure for a necessary since it provides larger bandwidth, Microstrip Patch Antenna”, IEEE Microwave and better radiation and better efficiency. However, it Wireless Components Letters, VOL. 15, NO. 2, leads to a larger antenna size. In order to reduce the size of the Microstrip patch antenna, substrates Feb. 2005. with higher dielectric constants must be used [4] Y. J. Sung, M. Kim, and Y.-S. Kim, which are less efficient and result in narrow bandwidth. Hence a trade-off must be realized “Harmonics Reduction With Defected Ground between the antenna performance and antenna Structure for a Microstrip Patch Antenna”, IEEE dimensions Antennas and Wireless Propagation Letters, VOL. 2, 2003. [5] Constantine A. Balanis, “Antenna Theory Analysis And Design”, 3rdedition , page 811-842 VI. ACKNOWLEDGMENT [6] D. Ahn, J. S. Park, C. S. Kim, J. Kim, Y. Qian, In the name of Allah s.w.t and He most and T. Itoh, “A design of the low-pass filter using merciful with Salawat and salam to prophet Muhammad s.a.w, Alhamdulillah thanks to Him the novel microstrip defected ground structure,” with the help and His permission giving us the IEEE Trans. Microwave Theory Tech., vol. 49, idea and health, also the opportunity to pp. 86–93, Jan. 2001. successfully completed this project entitled “Design of A Rectangular Patch Antenna Using [7] C. S. Kim, J. S. Park, D. Ahn, and J. B. Lim, CST”for Computer Engineering System Design “A novel 1-D periodic defected ground structure subject within the given time duration. for planar circuits,” IEEE Microwave Guided Wave Lett., vol. 10, pp. 131–133, Apr.2000. Here, we would to express our great thankful wishes to all of those who have been [8] J. I. Park, C. S. Kim, J. Kim, J. S. Park, Y. very supporting and helpful to us especially our Antenna and Propagation lecturer, Pn.Nor Qian, D. Ahn, and T. Itoh,―Modeling of a Hasimah Baba for her guidance, advices,and photonic bandgap and its application for the low- monitoring us to complete this project. Special pass filter design,‖ Proceedings of Asia Pacific thanks also to all classmates of EE2405A and Microw. Conf. (APMC), pp. 331–334, Singapore other friends who are involved directly or 1999. indirectly to accomplish this task. The full and kindness of support, attention, time and advises gives a full memories to me. VII. REFERENCES [1] Bahl, I. J and Bhartia, P; “Microstrip Antennas”, Artech House, 1980. [2] M. K. Mandal, P. Mondal, S. Sanyal, and A. Chakrabarty , “An Improved Design Of Harmonic 6