SlideShare a Scribd company logo
1 of 21
Chapter 3
The Cellular Concept - System Design
Fundamentals
Introduction
cell system
Frequency Reuse
Channel Assignment Strategies
Handoff Strategies
Interference and System Capacity
Improving Capacity In Cellular Systems
Older System
• Achieve a large coverage area by using a
simple, high powered transmitter.
• Put BS on top of mountains or tall towers,
so that it could provide coverage for
a large area.
• The next BS was so far away that
interference was not an issue.
• Severely limit the number of users that
could communicate simultaneously.
• Noise-limited system with few users.
• The Bell mobile system in New York City in the 1970s could
only support a maximum of twelve simultaneous calls over a
thousand square miles.
• The number of simultaneous calls a mobile wireless system
can accommodate is essentially determined by the total
spectral allocation for that system and the bandwidth
required for transmitting signals used in handling a call.
Example
• Using a typical analog system, each channel needs to have a
bandwidth of around 25 kHz to enable sufficient audio
quality to be carried, as well as allowing for a guard band
between adjacent signals to ensure there are no undue levels
of interference. Using this concept, it is possible to
accommodate only forty users in a frequency band 1-MHz
wide. Even if 100 MHz were allocated to the system, this
would enable only 4000 users to have access to the system.
older (Early) mobile radio systems
• A single high powered
transmitter (single cell)
• Large coverage area
• Low frequency resource utility
• Low user capacity
The cellular concept
• A major breakthrough in solving the problem of
spectral congestion and user capacity
• Many low power transmitters (small cells)
• Each cell covers only a small portion of the service
area.
• Each base station is allocated a portion of the total
number of Channels
• Nearby base stations are assigned different groups
of channels so that the interference between base
stations is minimized
Today cellular systems have millions
of subscribers, and therefore a far
more efficient method of using the
available spectrum is needed.
The concept of cells was 1st proposed
as early as 1947 by Bell Laboratories in
the US, with a detailed proposal for a
“High-Capacity Mobile Telephone
System" incorporating the cellular
concept submitted by Bell Laboratories to
the FCC in 1971.
The 1st AMPS system was deployed in
Chicago in 1983.
Cell Shapes
Geometric shapes covering an entire region
without overlap and with equal area.
By using the hexagon, the fewest number of cells
can cover a geographic region, and the hexagon
closely approximates a circular radiation pattern
which would occur for an omni-directional
antenna.
Center-excited cell
Base station transmitter is in the center of the cell.
Omni-directional antennas are used.
Edge-excited cell
Base station transmitters are on three of the six
cell vertices.
Sectored directional antennas are used.
• We use hexagonal cell shape as a simplistic
model of the radio coverage for each base
station.
• Universally adopted since the hexagon permits easy
and manageable analysis of a cellular system.
• The actual radio coverage of a cell is known as the
footprint and is determined from field
measurement
• In reality, it is not possible to define exactly the
edge of a cell. The signal strength gradually reduces,
and towards the edge of the cell performance falls.
• As the mobiles themselves also have different levels
of sensitivity, this adds a further sensitivity of the
edge of the cell.
• It is therefore impossible to have a sharp cut-o
between cells. In some areas they may overlap,
whereas in others there will be a “hole" in coverage.
• Although the real footprint is amorphous in nature,
a regular cell shape is needed for systematic system
design and adaptation for future growth.nts or
propagation prediction models.
Why hexagon?
• Adjacent circles cannot be overlaid upon a map
without leaving gaps or creating overlapping
regions.
• When considering geometric shapes which cover
an entire region without overlap and with equal
area, there are three sensible choices: a square, an
equilateral triangle, and a hexagon.
• A cell must be designed to serve the weakest
mobiles within the footprint, and these are
typically located at the edge of the cell.
For a given distance between the center of a
polygon and its farthest perimeter points, the
hexagon has the largest area of the three.
• By using the hexagon geometry, the fewest
number of cells can cover a geographic region
Closely approximate a circular radiation pattern
which would occur for an omnidirectional base
station antenna and free space propagation.
• Permit easy and manageable analysis of a cellular
system.
Types of cells
• macrocell – their coverage is large (aprox. 6 miles in
diameter); used in remote areas, high-power transmitters and
receivers are used
• microcell – their coverage is small (half a mile in diameter)
and are used in urban zones; low-powered transmitters and
receivers are used to avoid interference with cells in another
clusters
Cellular systems generations
• 1G (first generation) – voice-oriented systems based on analog
technology; ex.: Advanced Mobile Phone Systems (AMPS) and
cordless systems
• 2G (second generation) - voice-oriented systems based on
digital technology; more efficient and used less spectrum than
1G; ex.: Global System for Mobile (GSM) and US Time Division
Multiple Access (US-TDMA)
• 3G (third generation) – high-speed voice-oriented systems
integrated with data services; ex.: General Packet Radio
Service (GPRS), Code Division Multiple Access (CDMA)
• 4G (fourth generation) – WiMax, LTE, based on Internet
protocol networks and will provide voice, data and multimedia
service to subscribers
Frequency Reuse
• A service area is split into small geographic areas,
called cells.
• Each cellular base station is allocated a group of
radio channels.
• Base stations in adjacent cells are assigned
different channel groups.
• By limiting the coverage area of a base station, the
same group of channels may be reused by different
cells far away.
• The design process of selecting and allocating
channel groups for all of the cellular base stations
within a system is called frequency reuse or
frequency planning.
Final wc
Final wc

More Related Content

What's hot

Chap 4 (large scale propagation)
Chap 4 (large scale propagation)Chap 4 (large scale propagation)
Chap 4 (large scale propagation)asadkhan1327
 
Indoor propogation
Indoor propogationIndoor propogation
Indoor propogationHamza Sajjad
 
2. wireless propagation models free space propagation
2. wireless propagation models   free space propagation2. wireless propagation models   free space propagation
2. wireless propagation models free space propagationJAIGANESH SEKAR
 
Interference and system capacity
Interference and system capacityInterference and system capacity
Interference and system capacityAJAL A J
 
Link budget calculation
Link budget calculationLink budget calculation
Link budget calculationsitimunirah88
 
Small scale fading and multipath measurements
Small scale fading and multipath measurementsSmall scale fading and multipath measurements
Small scale fading and multipath measurementsVrince Vimal
 
MIMO Channel Capacity
MIMO Channel CapacityMIMO Channel Capacity
MIMO Channel CapacityPei-Che Chang
 
Frequency hopping spread spectrum
Frequency hopping spread spectrumFrequency hopping spread spectrum
Frequency hopping spread spectrumHarshit Gupta
 
Rayleigh Fading Channel In Mobile Digital Communication System
Rayleigh Fading Channel In Mobile Digital Communication SystemRayleigh Fading Channel In Mobile Digital Communication System
Rayleigh Fading Channel In Mobile Digital Communication SystemOUM SAOKOSAL
 
Chapter 7 multiple access techniques
Chapter 7 multiple access techniquesChapter 7 multiple access techniques
Chapter 7 multiple access techniquesKaushal Kabra
 
Fading and Large Scale Fading
 Fading and Large Scale Fading Fading and Large Scale Fading
Fading and Large Scale Fadingvickydone
 
Evolution of mobile radio communication
Evolution of mobile radio communicationEvolution of mobile radio communication
Evolution of mobile radio communicationjadhavmanoj01
 
Introduction To Wireless Fading Channels
Introduction To Wireless Fading ChannelsIntroduction To Wireless Fading Channels
Introduction To Wireless Fading ChannelsNitin Jain
 
Large scale path loss 1
Large scale path loss 1Large scale path loss 1
Large scale path loss 1Vrince Vimal
 
Multipl access and satellite Communication
Multipl access and satellite CommunicationMultipl access and satellite Communication
Multipl access and satellite CommunicationZunAib Ali
 

What's hot (20)

Chap 4 (large scale propagation)
Chap 4 (large scale propagation)Chap 4 (large scale propagation)
Chap 4 (large scale propagation)
 
Indoor propogation
Indoor propogationIndoor propogation
Indoor propogation
 
2. wireless propagation models free space propagation
2. wireless propagation models   free space propagation2. wireless propagation models   free space propagation
2. wireless propagation models free space propagation
 
Interference and system capacity
Interference and system capacityInterference and system capacity
Interference and system capacity
 
Wireless networking
Wireless networkingWireless networking
Wireless networking
 
Fundamental of cellular system
Fundamental of cellular systemFundamental of cellular system
Fundamental of cellular system
 
Link budget calculation
Link budget calculationLink budget calculation
Link budget calculation
 
Small scale fading and multipath measurements
Small scale fading and multipath measurementsSmall scale fading and multipath measurements
Small scale fading and multipath measurements
 
Fading Seminar
Fading SeminarFading Seminar
Fading Seminar
 
MIMO Channel Capacity
MIMO Channel CapacityMIMO Channel Capacity
MIMO Channel Capacity
 
Amps
AmpsAmps
Amps
 
Outdoor propagatiom model
Outdoor propagatiom modelOutdoor propagatiom model
Outdoor propagatiom model
 
Frequency hopping spread spectrum
Frequency hopping spread spectrumFrequency hopping spread spectrum
Frequency hopping spread spectrum
 
Rayleigh Fading Channel In Mobile Digital Communication System
Rayleigh Fading Channel In Mobile Digital Communication SystemRayleigh Fading Channel In Mobile Digital Communication System
Rayleigh Fading Channel In Mobile Digital Communication System
 
Chapter 7 multiple access techniques
Chapter 7 multiple access techniquesChapter 7 multiple access techniques
Chapter 7 multiple access techniques
 
Fading and Large Scale Fading
 Fading and Large Scale Fading Fading and Large Scale Fading
Fading and Large Scale Fading
 
Evolution of mobile radio communication
Evolution of mobile radio communicationEvolution of mobile radio communication
Evolution of mobile radio communication
 
Introduction To Wireless Fading Channels
Introduction To Wireless Fading ChannelsIntroduction To Wireless Fading Channels
Introduction To Wireless Fading Channels
 
Large scale path loss 1
Large scale path loss 1Large scale path loss 1
Large scale path loss 1
 
Multipl access and satellite Communication
Multipl access and satellite CommunicationMultipl access and satellite Communication
Multipl access and satellite Communication
 

Similar to Final wc

Lec06(practical handoff and footprint)
Lec06(practical handoff and footprint)Lec06(practical handoff and footprint)
Lec06(practical handoff and footprint)Muhammad Ali Zeb
 
Intorduction to cellular communication
Intorduction to cellular communicationIntorduction to cellular communication
Intorduction to cellular communicationZaahir Salam
 
Presentation1
Presentation1Presentation1
Presentation1tapubhai
 
Introduction to wireless communication
Introduction to wireless communicationIntroduction to wireless communication
Introduction to wireless communicationramalakshmi54
 
1.ec6801 introduction final
1.ec6801 introduction final1.ec6801 introduction final
1.ec6801 introduction finalramalakshmi54
 
Wireless Communication Notes.pdf
Wireless Communication Notes.pdfWireless Communication Notes.pdf
Wireless Communication Notes.pdfshanmugamsara
 
Researchpaper improving channel-capacity-of-a-cellular-system-using-cell-spli...
Researchpaper improving channel-capacity-of-a-cellular-system-using-cell-spli...Researchpaper improving channel-capacity-of-a-cellular-system-using-cell-spli...
Researchpaper improving channel-capacity-of-a-cellular-system-using-cell-spli...vks01ece
 
cellular-communications
 cellular-communications cellular-communications
cellular-communicationsjhcid
 
2-frequencyreusenb-130206113258-phpapp02.pdf
2-frequencyreusenb-130206113258-phpapp02.pdf2-frequencyreusenb-130206113258-phpapp02.pdf
2-frequencyreusenb-130206113258-phpapp02.pdfKumarSaurabh314476
 
Mobile communication demo
Mobile communication demoMobile communication demo
Mobile communication demoAsit Panda
 
Cellular concept in mobile communication
Cellular concept in mobile communicationCellular concept in mobile communication
Cellular concept in mobile communicationDrakshayaniHiremath1
 
cellular-communication
cellular-communicationcellular-communication
cellular-communicationjhcid
 
Thr cellular concept
Thr cellular conceptThr cellular concept
Thr cellular conceptSajid Marwat
 
03. Chapter- Three Elements of Cellular Radio System Design1.pdf
03. Chapter- Three Elements of Cellular Radio System Design1.pdf03. Chapter- Three Elements of Cellular Radio System Design1.pdf
03. Chapter- Three Elements of Cellular Radio System Design1.pdfsamiulsuman
 
Lecture 2 evolution of mobile cellular
Lecture 2  evolution of mobile cellular Lecture 2  evolution of mobile cellular
Lecture 2 evolution of mobile cellular Chandra Meena
 

Similar to Final wc (20)

Lec06(practical handoff and footprint)
Lec06(practical handoff and footprint)Lec06(practical handoff and footprint)
Lec06(practical handoff and footprint)
 
Intorduction to cellular communication
Intorduction to cellular communicationIntorduction to cellular communication
Intorduction to cellular communication
 
Cellular system design
Cellular system designCellular system design
Cellular system design
 
Presentation1
Presentation1Presentation1
Presentation1
 
Introduction to wireless communication
Introduction to wireless communicationIntroduction to wireless communication
Introduction to wireless communication
 
1.ec6801 introduction final
1.ec6801 introduction final1.ec6801 introduction final
1.ec6801 introduction final
 
Wireless Communication Notes.pdf
Wireless Communication Notes.pdfWireless Communication Notes.pdf
Wireless Communication Notes.pdf
 
Larry Jordan Buffalo NY
Larry Jordan Buffalo NYLarry Jordan Buffalo NY
Larry Jordan Buffalo NY
 
Larry Jordan Buffalo NY
Larry Jordan Buffalo NYLarry Jordan Buffalo NY
Larry Jordan Buffalo NY
 
Researchpaper improving channel-capacity-of-a-cellular-system-using-cell-spli...
Researchpaper improving channel-capacity-of-a-cellular-system-using-cell-spli...Researchpaper improving channel-capacity-of-a-cellular-system-using-cell-spli...
Researchpaper improving channel-capacity-of-a-cellular-system-using-cell-spli...
 
cellular-communications
 cellular-communications cellular-communications
cellular-communications
 
Wt module 2
Wt module 2Wt module 2
Wt module 2
 
2-frequencyreusenb-130206113258-phpapp02.pdf
2-frequencyreusenb-130206113258-phpapp02.pdf2-frequencyreusenb-130206113258-phpapp02.pdf
2-frequencyreusenb-130206113258-phpapp02.pdf
 
Mobile communication demo
Mobile communication demoMobile communication demo
Mobile communication demo
 
Cellular concept in mobile communication
Cellular concept in mobile communicationCellular concept in mobile communication
Cellular concept in mobile communication
 
cellular-communication
cellular-communicationcellular-communication
cellular-communication
 
Thr cellular concept
Thr cellular conceptThr cellular concept
Thr cellular concept
 
Chapter 2
Chapter 2Chapter 2
Chapter 2
 
03. Chapter- Three Elements of Cellular Radio System Design1.pdf
03. Chapter- Three Elements of Cellular Radio System Design1.pdf03. Chapter- Three Elements of Cellular Radio System Design1.pdf
03. Chapter- Three Elements of Cellular Radio System Design1.pdf
 
Lecture 2 evolution of mobile cellular
Lecture 2  evolution of mobile cellular Lecture 2  evolution of mobile cellular
Lecture 2 evolution of mobile cellular
 

Recently uploaded

ZXCTN 5804 / ZTE PTN / ZTE POTN / ZTE 5804 PTN / ZTE POTN 5804 ( 100/200 GE Z...
ZXCTN 5804 / ZTE PTN / ZTE POTN / ZTE 5804 PTN / ZTE POTN 5804 ( 100/200 GE Z...ZXCTN 5804 / ZTE PTN / ZTE POTN / ZTE 5804 PTN / ZTE POTN 5804 ( 100/200 GE Z...
ZXCTN 5804 / ZTE PTN / ZTE POTN / ZTE 5804 PTN / ZTE POTN 5804 ( 100/200 GE Z...ZTE
 
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
 
chaitra-1.pptx fake news detection using machine learning
chaitra-1.pptx  fake news detection using machine learningchaitra-1.pptx  fake news detection using machine learning
chaitra-1.pptx fake news detection using machine learningmisbanausheenparvam
 
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
 
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
 
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
 
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
 
APPLICATIONS-AC/DC DRIVES-OPERATING CHARACTERISTICS
APPLICATIONS-AC/DC DRIVES-OPERATING CHARACTERISTICSAPPLICATIONS-AC/DC DRIVES-OPERATING CHARACTERISTICS
APPLICATIONS-AC/DC DRIVES-OPERATING CHARACTERISTICSKurinjimalarL3
 
Introduction to Microprocesso programming and interfacing.pptx
Introduction to Microprocesso programming and interfacing.pptxIntroduction to Microprocesso programming and interfacing.pptx
Introduction to Microprocesso programming and interfacing.pptxvipinkmenon1
 
microprocessor 8085 and its interfacing
microprocessor 8085  and its interfacingmicroprocessor 8085  and its interfacing
microprocessor 8085 and its interfacingjaychoudhary37
 
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
 
Architect Hassan Khalil Portfolio for 2024
Architect Hassan Khalil Portfolio for 2024Architect Hassan Khalil Portfolio for 2024
Architect Hassan Khalil Portfolio for 2024hassan khalil
 
Model Call Girl in Narela Delhi reach out to us at 🔝8264348440🔝
Model Call Girl in Narela Delhi reach out to us at 🔝8264348440🔝Model Call Girl in Narela Delhi reach out to us at 🔝8264348440🔝
Model Call Girl in Narela Delhi reach out to us at 🔝8264348440🔝soniya singh
 
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
 
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
 
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
 
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
 

Recently uploaded (20)

ZXCTN 5804 / ZTE PTN / ZTE POTN / ZTE 5804 PTN / ZTE POTN 5804 ( 100/200 GE Z...
ZXCTN 5804 / ZTE PTN / ZTE POTN / ZTE 5804 PTN / ZTE POTN 5804 ( 100/200 GE Z...ZXCTN 5804 / ZTE PTN / ZTE POTN / ZTE 5804 PTN / ZTE POTN 5804 ( 100/200 GE Z...
ZXCTN 5804 / ZTE PTN / ZTE POTN / ZTE 5804 PTN / ZTE POTN 5804 ( 100/200 GE Z...
 
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
 
chaitra-1.pptx fake news detection using machine learning
chaitra-1.pptx  fake news detection using machine learningchaitra-1.pptx  fake news detection using machine learning
chaitra-1.pptx fake news detection using machine learning
 
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
 
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
 
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
 
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
 
APPLICATIONS-AC/DC DRIVES-OPERATING CHARACTERISTICS
APPLICATIONS-AC/DC DRIVES-OPERATING CHARACTERISTICSAPPLICATIONS-AC/DC DRIVES-OPERATING CHARACTERISTICS
APPLICATIONS-AC/DC DRIVES-OPERATING CHARACTERISTICS
 
Introduction to Microprocesso programming and interfacing.pptx
Introduction to Microprocesso programming and interfacing.pptxIntroduction to Microprocesso programming and interfacing.pptx
Introduction to Microprocesso programming and interfacing.pptx
 
microprocessor 8085 and its interfacing
microprocessor 8085  and its interfacingmicroprocessor 8085  and its interfacing
microprocessor 8085 and its interfacing
 
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
 
🔝9953056974🔝!!-YOUNG call girls in Rajendra Nagar Escort rvice Shot 2000 nigh...
🔝9953056974🔝!!-YOUNG call girls in Rajendra Nagar Escort rvice Shot 2000 nigh...🔝9953056974🔝!!-YOUNG call girls in Rajendra Nagar Escort rvice Shot 2000 nigh...
🔝9953056974🔝!!-YOUNG call girls in Rajendra Nagar Escort rvice Shot 2000 nigh...
 
Architect Hassan Khalil Portfolio for 2024
Architect Hassan Khalil Portfolio for 2024Architect Hassan Khalil Portfolio for 2024
Architect Hassan Khalil Portfolio for 2024
 
Call Us -/9953056974- Call Girls In Vikaspuri-/- Delhi NCR
Call Us -/9953056974- Call Girls In Vikaspuri-/- Delhi NCRCall Us -/9953056974- Call Girls In Vikaspuri-/- Delhi NCR
Call Us -/9953056974- Call Girls In Vikaspuri-/- Delhi NCR
 
9953056974 Call Girls In South Ex, Escorts (Delhi) NCR.pdf
9953056974 Call Girls In South Ex, Escorts (Delhi) NCR.pdf9953056974 Call Girls In South Ex, Escorts (Delhi) NCR.pdf
9953056974 Call Girls In South Ex, Escorts (Delhi) NCR.pdf
 
Model Call Girl in Narela Delhi reach out to us at 🔝8264348440🔝
Model Call Girl in Narela Delhi reach out to us at 🔝8264348440🔝Model Call Girl in Narela Delhi reach out to us at 🔝8264348440🔝
Model Call Girl in Narela Delhi reach out to us at 🔝8264348440🔝
 
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...
 
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
 
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...
 
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
 

Final wc

  • 1. Chapter 3 The Cellular Concept - System Design Fundamentals
  • 2. Introduction cell system Frequency Reuse Channel Assignment Strategies Handoff Strategies Interference and System Capacity Improving Capacity In Cellular Systems
  • 3. Older System • Achieve a large coverage area by using a simple, high powered transmitter. • Put BS on top of mountains or tall towers, so that it could provide coverage for a large area. • The next BS was so far away that interference was not an issue. • Severely limit the number of users that could communicate simultaneously. • Noise-limited system with few users.
  • 4. • The Bell mobile system in New York City in the 1970s could only support a maximum of twelve simultaneous calls over a thousand square miles. • The number of simultaneous calls a mobile wireless system can accommodate is essentially determined by the total spectral allocation for that system and the bandwidth required for transmitting signals used in handling a call. Example • Using a typical analog system, each channel needs to have a bandwidth of around 25 kHz to enable sufficient audio quality to be carried, as well as allowing for a guard band between adjacent signals to ensure there are no undue levels of interference. Using this concept, it is possible to accommodate only forty users in a frequency band 1-MHz wide. Even if 100 MHz were allocated to the system, this would enable only 4000 users to have access to the system.
  • 5.
  • 6. older (Early) mobile radio systems • A single high powered transmitter (single cell) • Large coverage area • Low frequency resource utility • Low user capacity
  • 7. The cellular concept • A major breakthrough in solving the problem of spectral congestion and user capacity • Many low power transmitters (small cells) • Each cell covers only a small portion of the service area. • Each base station is allocated a portion of the total number of Channels • Nearby base stations are assigned different groups of channels so that the interference between base stations is minimized
  • 8. Today cellular systems have millions of subscribers, and therefore a far more efficient method of using the available spectrum is needed.
  • 9. The concept of cells was 1st proposed as early as 1947 by Bell Laboratories in the US, with a detailed proposal for a “High-Capacity Mobile Telephone System" incorporating the cellular concept submitted by Bell Laboratories to the FCC in 1971. The 1st AMPS system was deployed in Chicago in 1983.
  • 10. Cell Shapes Geometric shapes covering an entire region without overlap and with equal area. By using the hexagon, the fewest number of cells can cover a geographic region, and the hexagon closely approximates a circular radiation pattern which would occur for an omni-directional antenna.
  • 11. Center-excited cell Base station transmitter is in the center of the cell. Omni-directional antennas are used. Edge-excited cell Base station transmitters are on three of the six cell vertices. Sectored directional antennas are used.
  • 12. • We use hexagonal cell shape as a simplistic model of the radio coverage for each base station. • Universally adopted since the hexagon permits easy and manageable analysis of a cellular system. • The actual radio coverage of a cell is known as the footprint and is determined from field measurement • In reality, it is not possible to define exactly the edge of a cell. The signal strength gradually reduces, and towards the edge of the cell performance falls.
  • 13. • As the mobiles themselves also have different levels of sensitivity, this adds a further sensitivity of the edge of the cell. • It is therefore impossible to have a sharp cut-o between cells. In some areas they may overlap, whereas in others there will be a “hole" in coverage. • Although the real footprint is amorphous in nature, a regular cell shape is needed for systematic system design and adaptation for future growth.nts or propagation prediction models.
  • 14. Why hexagon? • Adjacent circles cannot be overlaid upon a map without leaving gaps or creating overlapping regions. • When considering geometric shapes which cover an entire region without overlap and with equal area, there are three sensible choices: a square, an equilateral triangle, and a hexagon. • A cell must be designed to serve the weakest mobiles within the footprint, and these are typically located at the edge of the cell.
  • 15. For a given distance between the center of a polygon and its farthest perimeter points, the hexagon has the largest area of the three. • By using the hexagon geometry, the fewest number of cells can cover a geographic region Closely approximate a circular radiation pattern which would occur for an omnidirectional base station antenna and free space propagation. • Permit easy and manageable analysis of a cellular system.
  • 16.
  • 17. Types of cells • macrocell – their coverage is large (aprox. 6 miles in diameter); used in remote areas, high-power transmitters and receivers are used • microcell – their coverage is small (half a mile in diameter) and are used in urban zones; low-powered transmitters and receivers are used to avoid interference with cells in another clusters
  • 18. Cellular systems generations • 1G (first generation) – voice-oriented systems based on analog technology; ex.: Advanced Mobile Phone Systems (AMPS) and cordless systems • 2G (second generation) - voice-oriented systems based on digital technology; more efficient and used less spectrum than 1G; ex.: Global System for Mobile (GSM) and US Time Division Multiple Access (US-TDMA) • 3G (third generation) – high-speed voice-oriented systems integrated with data services; ex.: General Packet Radio Service (GPRS), Code Division Multiple Access (CDMA) • 4G (fourth generation) – WiMax, LTE, based on Internet protocol networks and will provide voice, data and multimedia service to subscribers
  • 19. Frequency Reuse • A service area is split into small geographic areas, called cells. • Each cellular base station is allocated a group of radio channels. • Base stations in adjacent cells are assigned different channel groups. • By limiting the coverage area of a base station, the same group of channels may be reused by different cells far away. • The design process of selecting and allocating channel groups for all of the cellular base stations within a system is called frequency reuse or frequency planning.