SlideShare une entreprise Scribd logo
1  sur  38
FUNDAMENTALS
OF
µ WAVE LINK
DESIGN
SHIV DUTT
RF Lead Engineer
Intarvo Technology Pvt Ltd
 Microwaves are electromagnetic radiations in the
frequency range 1 GHz to 30 GHz (generally for
Telecom).
 Small capacity systems generally employ the
frequencies less than 3 GHz while medium and
large capacity systems utilize frequencies ranging
from 3 to 15 GHz. Frequencies > 15 GHz are
essentially used for short-haul transmission.
 Less affected by natural calamities
 Less prone to accidental damage
 Links across mountains and rivers are more
economically feasible
 Single point installation and maintenance
 Single point security
 They are quickly deployed
As the frequency increases, the length of the link
decreases. Due to the high frequency range (2–
58GHz),the microwave links can be classified into
three main categories:
 (a) Long haul
 (b) Medium haul
 (c) Short haul
 The frequency of operation of these links is
usually 2–10 GHz. In the best of climatic
conditions and frequency of operation, the
distance covered by the links could range from 80
km to 45 km. These links are affected by multipath
fading.
 The frequency of operation of these links is
usually from 11 GHz to 20 GHz. Depending upon
the climatic conditions and frequency of operation,
the hop length can vary between 40 km and 20
km. These links are also affected by multipath
fading and rain fading.
 These links operate in high frequency ranges
(23–58 GHz) and thereby cover shorter
distances. At lowerfrequency ranges in this
band, links are affected by both multipath and
rain fading. At higher frequencies,when the hop
length is only a few kilometres, the multipath
phenomenon does not have a significant effect.
However, the impact of rain is quite severe.
Above figure shows a simple microwave link.
Major components that constitute a microwave
link are:
 (a) Indoor unit
 (b) Outdoor unit
 (c) Antenna
 (d) RF low loss cables/Waveguide
 (e) Microwave tower
 Also called IDU, it usually contains the radio modem; i.e.
it acts as a termination point which convert the signal
into a radio signal sent across the microwave link, using
modulation schemes.
 Indoor units are usually located in a protected
environment, i.e. within cabinets inside a building or
similar structure.
 They are not exposed to the environmental conditions
like the outdoor units.
Outdoor Unit (ODU)
 It converts the modulated low frequency signal into a
high frequency radio signal. The OU contains radio
frequency transmitters and receivers. Due this feature, it
is also known as a radio transceiver.
 The received signal usually passes the low noise
amplifier (LNA), which strengthens the weak signals.
This is followed by automatic gain control (AGC), which
ensures equality of the signal strength when entering the
radio receiver.
 The OU gets electrical power and the low frequency
modulated signal from the IU through coaxial cable/
waveguides connections
 An antenna interacts with free space; hence its
understanding becomes critical for the microwave link
planning engineers. An antenna is defined as the structure
that transfers the electromagnetic energy from the free
space into transmission lines and vice versa.
 There are many types of antennas: horn, parabolic, flat or
planar, lens, yagi, array, etc.
 The application of the antenna depends upon its electrical
and mechanical characteristics.
 RF low loss cables are used for 6/7GHz link.
Cables are limited to pass the high frequency
because its lumped component L and C form LPF
circuit.
 Waveguide are used for 15/18GHz link.
It has the capability to pass the high frequency
because its depends on the dimension of
waveguide.
 Earth’s atmosphere plays a vital role in the
propagation of microwaves.
 the atmosphere contains several minute layers,
each having its own pressure, temperature and
water vapour content.
 Refractive index of a particular media can be
defined as
 As pressure, temperature and humidity all change
with height, the refractive index also changes with
height, as refractivity varies with pressure,
temperature and humidity. This also means that
the radio refractivity N also changes with height:
N ∝ η (3.12)
η= 1.000 300
We can define K Factor using above information
K-Factor = R / R`
where
 R = Radius of ray beam curvature
 R` = Radius of earth
 K=4/3 for earth's atmosphere.
 Fig. shows value of K according to path traveled
by MW wave.
Fig: K-Factor in MW
Link
• Vertical Polarization is less affected by rain fading.  Rain
droplets are generally flattened with increase in size and
thus Vertical polarization is less affected. 
• However, horizontal polarization is very much used to
avoid interference but they are more prone to rain
fading, in case nearby areas are using Vertical
Polarization. 
 So, vertical polarization is generally used for high
frequency links, because high frequencies are
less affected by rain fading and horizontal
polarization is generally used to avoid
interference.  However, this cannot be treated as
rule.  Each operator is free to decide.
 Diversity in MW Links is a sort of redundancy in
network.  They also help overcome various factors
which affect MW links.
 In regions where multipath fading conditions exist,
it is necessary to incorporate diversity into the
system design.
 Two types of Diversity in MW links
1.  Frequency Diversity
2.  Space Diversity
• Frequency Diversity calls for use of two different
frequencies for same MW link.  This is normally avoided
because two frequency allocation means double the
annual fee payable for frequency. Frequency diversity is
generally meant to overcome frequency interferences
and various other factors.
• Space Diversity uses two MW antennas at each side
and is best suited to overcome Reflection of MW
waves.  Signal is received by both antennas called
Main Antenna and Diversity Antenna. This diversity
also helps a lot in areas of high wind because if one
antenna gets misaligned, network can function
without fail from another.
 
Note:-
Neither space diversity nor frequency diversity
provides any improvement or protection against rain
attenuation.
• From the figure above we can see that apart from
direct line of sight (LOS) we need to leave some
space above and below it to allow deviation of MW
wave from its original path.    Fresnel zone is nothing
but distance below and above a point which should be
clear for LOS communication.
Fig :MW Communication
 where
 rn = radius of fresnel zone.  Generally we consider
n=1 i.e. first fresnel zone clearance.
 d1 = distance of point from Point A
 d2 = distance of point from Point B
( D=d1 +d2)
 Now we will see link budget of MW link i.e. we will
analyze gains and losses and calculate received
power at other end.
Fig : Link Budget for MW Link
• From Fig. it can be seen clearly that received
power at Point B can be calculated as
• RxA = TxA + GA   - Lfs   - Arain  +  GB
where
• TxA = Transmit Power
• GA = Gain of Antenna A
• Lfs = Free Space Loss
• Arain = Attenuation due to rain
• GB = Gain of Antenna B
 A microwave link frequently is used to transmit
signals in instances in which it would be
impractical to run cables.
 If you need to connect two networks separated by
a public road,
 for example, you might find that regulations
restrict you from running cables above or below
the road. In such a case, a microwave link is an
ideal solution.
• In areas with lots of rain, use the lowest frequency
band to handle such projects.
• Microwave hops over or in the vicinity of the large
water surfaces and flat land areas can cause
severe multipath fading. Reflections may be
avoided by selecting sites that are shielded from
the reflected rays.
• Hot and humid coastal areas
Fundamentals of microwave link design

Contenu connexe

Tendances

microwave-communication-wave-guides
microwave-communication-wave-guidesmicrowave-communication-wave-guides
microwave-communication-wave-guidesATTO RATHORE
 
Microwave basics
Microwave basicsMicrowave basics
Microwave basicsIslam Saleh
 
transmission-lines
transmission-linestransmission-lines
transmission-linesATTO RATHORE
 
Link budget calculation
Link budget calculationLink budget calculation
Link budget calculationsitimunirah88
 
Chap 4 (large scale propagation)
Chap 4 (large scale propagation)Chap 4 (large scale propagation)
Chap 4 (large scale propagation)asadkhan1327
 
Chap 5 (small scale fading)
Chap 5 (small scale fading)Chap 5 (small scale fading)
Chap 5 (small scale fading)asadkhan1327
 
Mw links fundamentals
Mw links   fundamentalsMw links   fundamentals
Mw links fundamentalsIrfan Aziz
 
Link Power Budget Calculation and Propagation Factors for Satellite COmmunica...
Link Power Budget Calculation and Propagation Factors for Satellite COmmunica...Link Power Budget Calculation and Propagation Factors for Satellite COmmunica...
Link Power Budget Calculation and Propagation Factors for Satellite COmmunica...THANDAIAH PRABU
 
transmission-line-and-waveguide-ppt
transmission-line-and-waveguide-ppttransmission-line-and-waveguide-ppt
transmission-line-and-waveguide-pptATTO RATHORE
 
Diversity techniques presentation material
Diversity techniques presentation materialDiversity techniques presentation material
Diversity techniques presentation materialNini Lashari
 
Antennas wave and propagation
 Antennas wave and propagation Antennas wave and propagation
Antennas wave and propagationIsha Negi
 
Fading and Large Scale Fading
 Fading and Large Scale Fading Fading and Large Scale Fading
Fading and Large Scale Fadingvickydone
 
Small scale fading
Small scale fadingSmall scale fading
Small scale fadingAJAL A J
 
Microwave Transmission
Microwave TransmissionMicrowave Transmission
Microwave TransmissionDevang Bhatti
 
Power delay profile,delay spread and doppler spread
Power delay profile,delay spread and doppler spreadPower delay profile,delay spread and doppler spread
Power delay profile,delay spread and doppler spreadManish Srivastava
 
3. free space path loss model part 1
3. free space path loss model   part 13. free space path loss model   part 1
3. free space path loss model part 1JAIGANESH SEKAR
 
Point to point microwave
Point to point microwavePoint to point microwave
Point to point microwavenandkishorsuman
 

Tendances (20)

microwave-communication-wave-guides
microwave-communication-wave-guidesmicrowave-communication-wave-guides
microwave-communication-wave-guides
 
Microwave radio link design
Microwave radio link designMicrowave radio link design
Microwave radio link design
 
Microwave basics
Microwave basicsMicrowave basics
Microwave basics
 
transmission-lines
transmission-linestransmission-lines
transmission-lines
 
Link budget calculation
Link budget calculationLink budget calculation
Link budget calculation
 
Chap 4 (large scale propagation)
Chap 4 (large scale propagation)Chap 4 (large scale propagation)
Chap 4 (large scale propagation)
 
Chap 5 (small scale fading)
Chap 5 (small scale fading)Chap 5 (small scale fading)
Chap 5 (small scale fading)
 
Mw links fundamentals
Mw links   fundamentalsMw links   fundamentals
Mw links fundamentals
 
Link Power Budget Calculation and Propagation Factors for Satellite COmmunica...
Link Power Budget Calculation and Propagation Factors for Satellite COmmunica...Link Power Budget Calculation and Propagation Factors for Satellite COmmunica...
Link Power Budget Calculation and Propagation Factors for Satellite COmmunica...
 
transmission-line-and-waveguide-ppt
transmission-line-and-waveguide-ppttransmission-line-and-waveguide-ppt
transmission-line-and-waveguide-ppt
 
Diversity techniques presentation material
Diversity techniques presentation materialDiversity techniques presentation material
Diversity techniques presentation material
 
Antennas wave and propagation
 Antennas wave and propagation Antennas wave and propagation
Antennas wave and propagation
 
Fading and Large Scale Fading
 Fading and Large Scale Fading Fading and Large Scale Fading
Fading and Large Scale Fading
 
Small scale fading
Small scale fadingSmall scale fading
Small scale fading
 
Microwave Transmission
Microwave TransmissionMicrowave Transmission
Microwave Transmission
 
Power delay profile,delay spread and doppler spread
Power delay profile,delay spread and doppler spreadPower delay profile,delay spread and doppler spread
Power delay profile,delay spread and doppler spread
 
Microwave Antenna
Microwave AntennaMicrowave Antenna
Microwave Antenna
 
Radio transmitters
Radio transmittersRadio transmitters
Radio transmitters
 
3. free space path loss model part 1
3. free space path loss model   part 13. free space path loss model   part 1
3. free space path loss model part 1
 
Point to point microwave
Point to point microwavePoint to point microwave
Point to point microwave
 

Similaire à Fundamentals of microwave link design

MICROWAVE LINK DESIGN
MICROWAVE LINK DESIGNMICROWAVE LINK DESIGN
MICROWAVE LINK DESIGNrickmejia5
 
Jaimin chp-2 - 2011 batch
Jaimin   chp-2  - 2011 batchJaimin   chp-2  - 2011 batch
Jaimin chp-2 - 2011 batchJaimin Jani
 
D09281524
D09281524D09281524
D09281524eieiswe
 
Microstrip Antenna for ISM Band (2.4GHz) Applications-A review
Microstrip Antenna for ISM Band (2.4GHz) Applications-A reviewMicrostrip Antenna for ISM Band (2.4GHz) Applications-A review
Microstrip Antenna for ISM Band (2.4GHz) Applications-A reviewIJERA Editor
 
RF and Microwave Engineering
RF  and Microwave EngineeringRF  and Microwave Engineering
RF and Microwave Engineeringsrirenga
 
microwave_communications1__1.pptx
microwave_communications1__1.pptxmicrowave_communications1__1.pptx
microwave_communications1__1.pptxGeoffreyAlleyne
 
Introduction & Wireless Transmission
Introduction & Wireless TransmissionIntroduction & Wireless Transmission
Introduction & Wireless TransmissionJoe Christensen
 
Multiband Microstrip Antenna for Wi-MAX Application-A study
Multiband Microstrip Antenna for Wi-MAX Application-A studyMultiband Microstrip Antenna for Wi-MAX Application-A study
Multiband Microstrip Antenna for Wi-MAX Application-A studyIJERA Editor
 
Wc nots final unit new 7
Wc nots final unit new  7Wc nots final unit new  7
Wc nots final unit new 7SURESHA V
 
Wireless channels in wireless communication
Wireless channels in wireless communicationWireless channels in wireless communication
Wireless channels in wireless communicationPreciousMposa1
 
Performance of modeling wireless networks in realistic environment
Performance of modeling wireless networks in realistic environmentPerformance of modeling wireless networks in realistic environment
Performance of modeling wireless networks in realistic environmentCSCJournals
 
A systematic evaluation of link budget for
A systematic evaluation of link budget forA systematic evaluation of link budget for
A systematic evaluation of link budget forAlexander Decker
 
A systematic evaluation of link budget for
A systematic evaluation of link budget forA systematic evaluation of link budget for
A systematic evaluation of link budget forAlexander Decker
 
A NEW MODIFIED SYSTEM FOR EQUAL POWER DIVISION WITH LCC FOR WIRELESS APPLCATIONS
A NEW MODIFIED SYSTEM FOR EQUAL POWER DIVISION WITH LCC FOR WIRELESS APPLCATIONSA NEW MODIFIED SYSTEM FOR EQUAL POWER DIVISION WITH LCC FOR WIRELESS APPLCATIONS
A NEW MODIFIED SYSTEM FOR EQUAL POWER DIVISION WITH LCC FOR WIRELESS APPLCATIONSijistjournal
 
Link budjet radio and spread spectrum theory
Link budjet   radio and spread spectrum theoryLink budjet   radio and spread spectrum theory
Link budjet radio and spread spectrum theoryDiogo Edler Menezes
 
Mw presentation 1
Mw presentation 1Mw presentation 1
Mw presentation 1Amizareza
 

Similaire à Fundamentals of microwave link design (20)

MICROWAVE LINK DESIGN
MICROWAVE LINK DESIGNMICROWAVE LINK DESIGN
MICROWAVE LINK DESIGN
 
Jaimin chp-2 - 2011 batch
Jaimin   chp-2  - 2011 batchJaimin   chp-2  - 2011 batch
Jaimin chp-2 - 2011 batch
 
D09281524
D09281524D09281524
D09281524
 
Microstrip Antenna for ISM Band (2.4GHz) Applications-A review
Microstrip Antenna for ISM Band (2.4GHz) Applications-A reviewMicrostrip Antenna for ISM Band (2.4GHz) Applications-A review
Microstrip Antenna for ISM Band (2.4GHz) Applications-A review
 
RF and Microwave Engineering
RF  and Microwave EngineeringRF  and Microwave Engineering
RF and Microwave Engineering
 
microwave_communications1__1.pptx
microwave_communications1__1.pptxmicrowave_communications1__1.pptx
microwave_communications1__1.pptx
 
I035456062
I035456062I035456062
I035456062
 
Introduction & Wireless Transmission
Introduction & Wireless TransmissionIntroduction & Wireless Transmission
Introduction & Wireless Transmission
 
Multiband Microstrip Antenna for Wi-MAX Application-A study
Multiband Microstrip Antenna for Wi-MAX Application-A studyMultiband Microstrip Antenna for Wi-MAX Application-A study
Multiband Microstrip Antenna for Wi-MAX Application-A study
 
Wc nots final unit new 7
Wc nots final unit new  7Wc nots final unit new  7
Wc nots final unit new 7
 
Bse 3106 wifi
Bse 3106 wifiBse 3106 wifi
Bse 3106 wifi
 
Geoffrey80
Geoffrey80Geoffrey80
Geoffrey80
 
Wireless channels in wireless communication
Wireless channels in wireless communicationWireless channels in wireless communication
Wireless channels in wireless communication
 
Performance of modeling wireless networks in realistic environment
Performance of modeling wireless networks in realistic environmentPerformance of modeling wireless networks in realistic environment
Performance of modeling wireless networks in realistic environment
 
A systematic evaluation of link budget for
A systematic evaluation of link budget forA systematic evaluation of link budget for
A systematic evaluation of link budget for
 
A systematic evaluation of link budget for
A systematic evaluation of link budget forA systematic evaluation of link budget for
A systematic evaluation of link budget for
 
548 mw intro
548 mw intro548 mw intro
548 mw intro
 
A NEW MODIFIED SYSTEM FOR EQUAL POWER DIVISION WITH LCC FOR WIRELESS APPLCATIONS
A NEW MODIFIED SYSTEM FOR EQUAL POWER DIVISION WITH LCC FOR WIRELESS APPLCATIONSA NEW MODIFIED SYSTEM FOR EQUAL POWER DIVISION WITH LCC FOR WIRELESS APPLCATIONS
A NEW MODIFIED SYSTEM FOR EQUAL POWER DIVISION WITH LCC FOR WIRELESS APPLCATIONS
 
Link budjet radio and spread spectrum theory
Link budjet   radio and spread spectrum theoryLink budjet   radio and spread spectrum theory
Link budjet radio and spread spectrum theory
 
Mw presentation 1
Mw presentation 1Mw presentation 1
Mw presentation 1
 

Plus de SHIV DUTT

Digital transmission of high resolution signal and bandwidth requirement of DAC
Digital transmission of high resolution signal and bandwidth requirement of DACDigital transmission of high resolution signal and bandwidth requirement of DAC
Digital transmission of high resolution signal and bandwidth requirement of DACSHIV DUTT
 
Analog RF Front End Architecture
Analog RF Front End ArchitectureAnalog RF Front End Architecture
Analog RF Front End ArchitectureSHIV DUTT
 
Analog to digital converter (ADC)
Analog to digital converter (ADC)Analog to digital converter (ADC)
Analog to digital converter (ADC)SHIV DUTT
 
Test & measurement; importance of test and measurement in electronics; measur...
Test & measurement; importance of test and measurement in electronics; measur...Test & measurement; importance of test and measurement in electronics; measur...
Test & measurement; importance of test and measurement in electronics; measur...SHIV DUTT
 
Microwave link Design using Matlab tool
Microwave link Design using Matlab toolMicrowave link Design using Matlab tool
Microwave link Design using Matlab toolSHIV DUTT
 
Phase combining of high power amplifier
Phase combining of high power amplifier Phase combining of high power amplifier
Phase combining of high power amplifier SHIV DUTT
 

Plus de SHIV DUTT (6)

Digital transmission of high resolution signal and bandwidth requirement of DAC
Digital transmission of high resolution signal and bandwidth requirement of DACDigital transmission of high resolution signal and bandwidth requirement of DAC
Digital transmission of high resolution signal and bandwidth requirement of DAC
 
Analog RF Front End Architecture
Analog RF Front End ArchitectureAnalog RF Front End Architecture
Analog RF Front End Architecture
 
Analog to digital converter (ADC)
Analog to digital converter (ADC)Analog to digital converter (ADC)
Analog to digital converter (ADC)
 
Test & measurement; importance of test and measurement in electronics; measur...
Test & measurement; importance of test and measurement in electronics; measur...Test & measurement; importance of test and measurement in electronics; measur...
Test & measurement; importance of test and measurement in electronics; measur...
 
Microwave link Design using Matlab tool
Microwave link Design using Matlab toolMicrowave link Design using Matlab tool
Microwave link Design using Matlab tool
 
Phase combining of high power amplifier
Phase combining of high power amplifier Phase combining of high power amplifier
Phase combining of high power amplifier
 

Dernier

Call Girls In Bangalore ☎ 7737669865 🥵 Book Your One night Stand
Call Girls In Bangalore ☎ 7737669865 🥵 Book Your One night StandCall Girls In Bangalore ☎ 7737669865 🥵 Book Your One night Stand
Call Girls In Bangalore ☎ 7737669865 🥵 Book Your One night Standamitlee9823
 
DC MACHINE-Motoring and generation, Armature circuit equation
DC MACHINE-Motoring and generation, Armature circuit equationDC MACHINE-Motoring and generation, Armature circuit equation
DC MACHINE-Motoring and generation, Armature circuit equationBhangaleSonal
 
ONLINE FOOD ORDER SYSTEM PROJECT REPORT.pdf
ONLINE FOOD ORDER SYSTEM PROJECT REPORT.pdfONLINE FOOD ORDER SYSTEM PROJECT REPORT.pdf
ONLINE FOOD ORDER SYSTEM PROJECT REPORT.pdfKamal Acharya
 
KubeKraft presentation @CloudNativeHooghly
KubeKraft presentation @CloudNativeHooghlyKubeKraft presentation @CloudNativeHooghly
KubeKraft presentation @CloudNativeHooghlysanyuktamishra911
 
22-prompt engineering noted slide shown.pdf
22-prompt engineering noted slide shown.pdf22-prompt engineering noted slide shown.pdf
22-prompt engineering noted slide shown.pdf203318pmpc
 
Design For Accessibility: Getting it right from the start
Design For Accessibility: Getting it right from the startDesign For Accessibility: Getting it right from the start
Design For Accessibility: Getting it right from the startQuintin Balsdon
 
Top Rated Call Girls In chittoor 📱 {7001035870} VIP Escorts chittoor
Top Rated Call Girls In chittoor 📱 {7001035870} VIP Escorts chittoorTop Rated Call Girls In chittoor 📱 {7001035870} VIP Escorts chittoor
Top Rated Call Girls In chittoor 📱 {7001035870} VIP Escorts chittoordharasingh5698
 
Standard vs Custom Battery Packs - Decoding the Power Play
Standard vs Custom Battery Packs - Decoding the Power PlayStandard vs Custom Battery Packs - Decoding the Power Play
Standard vs Custom Battery Packs - Decoding the Power PlayEpec Engineered Technologies
 
VIP Model Call Girls Kothrud ( Pune ) Call ON 8005736733 Starting From 5K to ...
VIP Model Call Girls Kothrud ( Pune ) Call ON 8005736733 Starting From 5K to ...VIP Model Call Girls Kothrud ( Pune ) Call ON 8005736733 Starting From 5K to ...
VIP Model Call Girls Kothrud ( Pune ) Call ON 8005736733 Starting From 5K to ...SUHANI PANDEY
 
data_management_and _data_science_cheat_sheet.pdf
data_management_and _data_science_cheat_sheet.pdfdata_management_and _data_science_cheat_sheet.pdf
data_management_and _data_science_cheat_sheet.pdfJiananWang21
 
Unit 1 - Soil Classification and Compaction.pdf
Unit 1 - Soil Classification and Compaction.pdfUnit 1 - Soil Classification and Compaction.pdf
Unit 1 - Soil Classification and Compaction.pdfRagavanV2
 
A Study of Urban Area Plan for Pabna Municipality
A Study of Urban Area Plan for Pabna MunicipalityA Study of Urban Area Plan for Pabna Municipality
A Study of Urban Area Plan for Pabna MunicipalityMorshed Ahmed Rahath
 
Introduction to Serverless with AWS Lambda
Introduction to Serverless with AWS LambdaIntroduction to Serverless with AWS Lambda
Introduction to Serverless with AWS LambdaOmar Fathy
 
FULL ENJOY Call Girls In Mahipalpur Delhi Contact Us 8377877756
FULL ENJOY Call Girls In Mahipalpur Delhi Contact Us 8377877756FULL ENJOY Call Girls In Mahipalpur Delhi Contact Us 8377877756
FULL ENJOY Call Girls In Mahipalpur Delhi Contact Us 8377877756dollysharma2066
 
VIP Call Girls Ankleshwar 7001035870 Whatsapp Number, 24/07 Booking
VIP Call Girls Ankleshwar 7001035870 Whatsapp Number, 24/07 BookingVIP Call Girls Ankleshwar 7001035870 Whatsapp Number, 24/07 Booking
VIP Call Girls Ankleshwar 7001035870 Whatsapp Number, 24/07 Bookingdharasingh5698
 
UNIT - IV - Air Compressors and its Performance
UNIT - IV - Air Compressors and its PerformanceUNIT - IV - Air Compressors and its Performance
UNIT - IV - Air Compressors and its Performancesivaprakash250
 

Dernier (20)

Call Girls in Ramesh Nagar Delhi 💯 Call Us 🔝9953056974 🔝 Escort Service
Call Girls in Ramesh Nagar Delhi 💯 Call Us 🔝9953056974 🔝 Escort ServiceCall Girls in Ramesh Nagar Delhi 💯 Call Us 🔝9953056974 🔝 Escort Service
Call Girls in Ramesh Nagar Delhi 💯 Call Us 🔝9953056974 🔝 Escort Service
 
Call Girls In Bangalore ☎ 7737669865 🥵 Book Your One night Stand
Call Girls In Bangalore ☎ 7737669865 🥵 Book Your One night StandCall Girls In Bangalore ☎ 7737669865 🥵 Book Your One night Stand
Call Girls In Bangalore ☎ 7737669865 🥵 Book Your One night Stand
 
DC MACHINE-Motoring and generation, Armature circuit equation
DC MACHINE-Motoring and generation, Armature circuit equationDC MACHINE-Motoring and generation, Armature circuit equation
DC MACHINE-Motoring and generation, Armature circuit equation
 
(INDIRA) Call Girl Aurangabad Call Now 8617697112 Aurangabad Escorts 24x7
(INDIRA) Call Girl Aurangabad Call Now 8617697112 Aurangabad Escorts 24x7(INDIRA) Call Girl Aurangabad Call Now 8617697112 Aurangabad Escorts 24x7
(INDIRA) Call Girl Aurangabad Call Now 8617697112 Aurangabad Escorts 24x7
 
Integrated Test Rig For HTFE-25 - Neometrix
Integrated Test Rig For HTFE-25 - NeometrixIntegrated Test Rig For HTFE-25 - Neometrix
Integrated Test Rig For HTFE-25 - Neometrix
 
ONLINE FOOD ORDER SYSTEM PROJECT REPORT.pdf
ONLINE FOOD ORDER SYSTEM PROJECT REPORT.pdfONLINE FOOD ORDER SYSTEM PROJECT REPORT.pdf
ONLINE FOOD ORDER SYSTEM PROJECT REPORT.pdf
 
KubeKraft presentation @CloudNativeHooghly
KubeKraft presentation @CloudNativeHooghlyKubeKraft presentation @CloudNativeHooghly
KubeKraft presentation @CloudNativeHooghly
 
22-prompt engineering noted slide shown.pdf
22-prompt engineering noted slide shown.pdf22-prompt engineering noted slide shown.pdf
22-prompt engineering noted slide shown.pdf
 
Cara Menggugurkan Sperma Yang Masuk Rahim Biyar Tidak Hamil
Cara Menggugurkan Sperma Yang Masuk Rahim Biyar Tidak HamilCara Menggugurkan Sperma Yang Masuk Rahim Biyar Tidak Hamil
Cara Menggugurkan Sperma Yang Masuk Rahim Biyar Tidak Hamil
 
Design For Accessibility: Getting it right from the start
Design For Accessibility: Getting it right from the startDesign For Accessibility: Getting it right from the start
Design For Accessibility: Getting it right from the start
 
Top Rated Call Girls In chittoor 📱 {7001035870} VIP Escorts chittoor
Top Rated Call Girls In chittoor 📱 {7001035870} VIP Escorts chittoorTop Rated Call Girls In chittoor 📱 {7001035870} VIP Escorts chittoor
Top Rated Call Girls In chittoor 📱 {7001035870} VIP Escorts chittoor
 
Standard vs Custom Battery Packs - Decoding the Power Play
Standard vs Custom Battery Packs - Decoding the Power PlayStandard vs Custom Battery Packs - Decoding the Power Play
Standard vs Custom Battery Packs - Decoding the Power Play
 
VIP Model Call Girls Kothrud ( Pune ) Call ON 8005736733 Starting From 5K to ...
VIP Model Call Girls Kothrud ( Pune ) Call ON 8005736733 Starting From 5K to ...VIP Model Call Girls Kothrud ( Pune ) Call ON 8005736733 Starting From 5K to ...
VIP Model Call Girls Kothrud ( Pune ) Call ON 8005736733 Starting From 5K to ...
 
data_management_and _data_science_cheat_sheet.pdf
data_management_and _data_science_cheat_sheet.pdfdata_management_and _data_science_cheat_sheet.pdf
data_management_and _data_science_cheat_sheet.pdf
 
Unit 1 - Soil Classification and Compaction.pdf
Unit 1 - Soil Classification and Compaction.pdfUnit 1 - Soil Classification and Compaction.pdf
Unit 1 - Soil Classification and Compaction.pdf
 
A Study of Urban Area Plan for Pabna Municipality
A Study of Urban Area Plan for Pabna MunicipalityA Study of Urban Area Plan for Pabna Municipality
A Study of Urban Area Plan for Pabna Municipality
 
Introduction to Serverless with AWS Lambda
Introduction to Serverless with AWS LambdaIntroduction to Serverless with AWS Lambda
Introduction to Serverless with AWS Lambda
 
FULL ENJOY Call Girls In Mahipalpur Delhi Contact Us 8377877756
FULL ENJOY Call Girls In Mahipalpur Delhi Contact Us 8377877756FULL ENJOY Call Girls In Mahipalpur Delhi Contact Us 8377877756
FULL ENJOY Call Girls In Mahipalpur Delhi Contact Us 8377877756
 
VIP Call Girls Ankleshwar 7001035870 Whatsapp Number, 24/07 Booking
VIP Call Girls Ankleshwar 7001035870 Whatsapp Number, 24/07 BookingVIP Call Girls Ankleshwar 7001035870 Whatsapp Number, 24/07 Booking
VIP Call Girls Ankleshwar 7001035870 Whatsapp Number, 24/07 Booking
 
UNIT - IV - Air Compressors and its Performance
UNIT - IV - Air Compressors and its PerformanceUNIT - IV - Air Compressors and its Performance
UNIT - IV - Air Compressors and its Performance
 

Fundamentals of microwave link design

  • 1. FUNDAMENTALS OF µ WAVE LINK DESIGN SHIV DUTT RF Lead Engineer Intarvo Technology Pvt Ltd
  • 2.  Microwaves are electromagnetic radiations in the frequency range 1 GHz to 30 GHz (generally for Telecom).
  • 3.
  • 4.  Small capacity systems generally employ the frequencies less than 3 GHz while medium and large capacity systems utilize frequencies ranging from 3 to 15 GHz. Frequencies > 15 GHz are essentially used for short-haul transmission.
  • 5.  Less affected by natural calamities  Less prone to accidental damage  Links across mountains and rivers are more economically feasible  Single point installation and maintenance  Single point security  They are quickly deployed
  • 6.
  • 7. As the frequency increases, the length of the link decreases. Due to the high frequency range (2– 58GHz),the microwave links can be classified into three main categories:  (a) Long haul  (b) Medium haul  (c) Short haul
  • 8.  The frequency of operation of these links is usually 2–10 GHz. In the best of climatic conditions and frequency of operation, the distance covered by the links could range from 80 km to 45 km. These links are affected by multipath fading.
  • 9.  The frequency of operation of these links is usually from 11 GHz to 20 GHz. Depending upon the climatic conditions and frequency of operation, the hop length can vary between 40 km and 20 km. These links are also affected by multipath fading and rain fading.
  • 10.  These links operate in high frequency ranges (23–58 GHz) and thereby cover shorter distances. At lowerfrequency ranges in this band, links are affected by both multipath and rain fading. At higher frequencies,when the hop length is only a few kilometres, the multipath phenomenon does not have a significant effect. However, the impact of rain is quite severe.
  • 11.
  • 12. Above figure shows a simple microwave link. Major components that constitute a microwave link are:  (a) Indoor unit  (b) Outdoor unit  (c) Antenna  (d) RF low loss cables/Waveguide  (e) Microwave tower
  • 13.  Also called IDU, it usually contains the radio modem; i.e. it acts as a termination point which convert the signal into a radio signal sent across the microwave link, using modulation schemes.  Indoor units are usually located in a protected environment, i.e. within cabinets inside a building or similar structure.  They are not exposed to the environmental conditions like the outdoor units.
  • 15.  It converts the modulated low frequency signal into a high frequency radio signal. The OU contains radio frequency transmitters and receivers. Due this feature, it is also known as a radio transceiver.  The received signal usually passes the low noise amplifier (LNA), which strengthens the weak signals. This is followed by automatic gain control (AGC), which ensures equality of the signal strength when entering the radio receiver.  The OU gets electrical power and the low frequency modulated signal from the IU through coaxial cable/ waveguides connections
  • 16.  An antenna interacts with free space; hence its understanding becomes critical for the microwave link planning engineers. An antenna is defined as the structure that transfers the electromagnetic energy from the free space into transmission lines and vice versa.  There are many types of antennas: horn, parabolic, flat or planar, lens, yagi, array, etc.  The application of the antenna depends upon its electrical and mechanical characteristics.
  • 17.  RF low loss cables are used for 6/7GHz link. Cables are limited to pass the high frequency because its lumped component L and C form LPF circuit.  Waveguide are used for 15/18GHz link. It has the capability to pass the high frequency because its depends on the dimension of waveguide.
  • 18.  Earth’s atmosphere plays a vital role in the propagation of microwaves.  the atmosphere contains several minute layers, each having its own pressure, temperature and water vapour content.  Refractive index of a particular media can be defined as
  • 19.  As pressure, temperature and humidity all change with height, the refractive index also changes with height, as refractivity varies with pressure, temperature and humidity. This also means that the radio refractivity N also changes with height: N ∝ η (3.12) η= 1.000 300
  • 20.
  • 21. We can define K Factor using above information K-Factor = R / R` where  R = Radius of ray beam curvature  R` = Radius of earth  K=4/3 for earth's atmosphere.  Fig. shows value of K according to path traveled by MW wave.
  • 22. Fig: K-Factor in MW Link
  • 23. • Vertical Polarization is less affected by rain fading.  Rain droplets are generally flattened with increase in size and thus Vertical polarization is less affected.  • However, horizontal polarization is very much used to avoid interference but they are more prone to rain fading, in case nearby areas are using Vertical Polarization. 
  • 24.  So, vertical polarization is generally used for high frequency links, because high frequencies are less affected by rain fading and horizontal polarization is generally used to avoid interference.  However, this cannot be treated as rule.  Each operator is free to decide.
  • 25.  Diversity in MW Links is a sort of redundancy in network.  They also help overcome various factors which affect MW links.  In regions where multipath fading conditions exist, it is necessary to incorporate diversity into the system design.  Two types of Diversity in MW links 1.  Frequency Diversity 2.  Space Diversity
  • 26. • Frequency Diversity calls for use of two different frequencies for same MW link.  This is normally avoided because two frequency allocation means double the annual fee payable for frequency. Frequency diversity is generally meant to overcome frequency interferences and various other factors.
  • 27. • Space Diversity uses two MW antennas at each side and is best suited to overcome Reflection of MW waves.  Signal is received by both antennas called Main Antenna and Diversity Antenna. This diversity also helps a lot in areas of high wind because if one antenna gets misaligned, network can function without fail from another.   Note:- Neither space diversity nor frequency diversity provides any improvement or protection against rain attenuation.
  • 28. • From the figure above we can see that apart from direct line of sight (LOS) we need to leave some space above and below it to allow deviation of MW wave from its original path.    Fresnel zone is nothing but distance below and above a point which should be clear for LOS communication. Fig :MW Communication
  • 29.
  • 30.  where  rn = radius of fresnel zone.  Generally we consider n=1 i.e. first fresnel zone clearance.  d1 = distance of point from Point A  d2 = distance of point from Point B
  • 32.
  • 33.
  • 34.  Now we will see link budget of MW link i.e. we will analyze gains and losses and calculate received power at other end. Fig : Link Budget for MW Link
  • 35. • From Fig. it can be seen clearly that received power at Point B can be calculated as • RxA = TxA + GA   - Lfs   - Arain  +  GB where • TxA = Transmit Power • GA = Gain of Antenna A • Lfs = Free Space Loss • Arain = Attenuation due to rain • GB = Gain of Antenna B
  • 36.  A microwave link frequently is used to transmit signals in instances in which it would be impractical to run cables.  If you need to connect two networks separated by a public road,  for example, you might find that regulations restrict you from running cables above or below the road. In such a case, a microwave link is an ideal solution.
  • 37. • In areas with lots of rain, use the lowest frequency band to handle such projects. • Microwave hops over or in the vicinity of the large water surfaces and flat land areas can cause severe multipath fading. Reflections may be avoided by selecting sites that are shielded from the reflected rays. • Hot and humid coastal areas