SlideShare une entreprise Scribd logo
1  sur  17
Télécharger pour lire hors ligne
WIDEBAND
FREQUENCY MODULATION
Presented By :
Group 9
Ayan Das ▪ Arnab Paul ▪ Arnab Chatterjee ▪ Arijit Dhali
11500320072 ▪ 11500320075 ▪ 11500320076 ▪ 11500320078
TABLE OF CONTENTS
WBFM Overview
01
Mathematical Analysis
02
Power and Bandwidth
03
Conclusion and Refernces
04
Frequency Modulation
05
In this article, we are going to address applications
and techniques for WBFM with modulation indexes
much larger than 1, going up to 100 and beyond. In
such applications spectral efficiency is less important
and sometimes large spectral spread is actually
desired. The purpose of this article is to present
some major applications in the commercial and
defence markets. Within this framework, the
common techniques of generating WBFM are
presented.
Abstract
What is Frequency Modulation?
Frequency modulation (FM) is the encoding of information in
a carrier wave by varying the instantaneous frequency of
the modulating wave. The technology is used
in telecommunications, radio broadcasting, signal processing,
and computing.
There are 2 types of Frequency Modulation:
• Narrow Band Frequency Modulation
• Wide Band Frequency Modulation
From the expression of Frequency Modulation we
can narrate,
S(t) = Accos(wct + βsin(wmt))
where, Ac = Carrier Amplitude
β = Modulation Index
However when β>1, then FM is said to be Wide
Band FM (WBFM)
When Wideband Frequency
Modulation occurs?
Direct Method
Methods of Generating Wideband Frequency Modulation
Indirect Method
Voltage
Controlled
Oscillator
NBFM
Modulator
Frequency
Multiplier
Modulating
Signal
Modulating
Signal
WBFM
Wave
WBFM
Wave
NBFM
Wave
Accos(2πfct)
Bessel Function:
Wideband Frequency Modulation using Bessel Function
Jn(x) =
𝟏
𝟐𝝅
‫׬‬
−𝝅
𝝅
𝒆𝒋(𝒙 𝐬𝐢𝐧 𝜽−𝒏𝜽)
𝒅𝜽
Properties of Bessel Function:
• Jn(x) ↓ when n ↑
∴ J0(x) > J1(x) > J2(x)…
• J-n(x) = (-1)nJn(x)
∴ J-n(x) = Jn(x), when n is even
J-n(x) = -Jn(x), when n is odd
• ‫׬‬
𝒏=−∞
∞
𝑱𝒏
𝟐
𝒙 = 𝟏
• Jn(x) always result in real quantity
Plot of Bessel Function
Mathematical analysis
General Expression of WBFM:
SFM (t) = AC cos [2π𝑓
𝑐 + β sin(2π 𝑓
𝑚𝑡)] = 𝐴𝐶 cos θ . Thus,
cos 𝜃 = Re e𝑗𝜃
Since, 𝑒𝑗θ
= cos θ + j sin θ
Therefore, 𝑆𝐹𝑀 𝑡 = 𝐴𝐶 𝑅𝑒 𝑒𝑗 2𝜋𝑓𝑐𝑡+𝛽 sin 2π𝑓𝑚𝑡
= 𝐴𝐶 𝑅𝑒 𝑒𝑗 2𝜋𝑓𝑐𝑡
+ 𝑒𝑗(𝛽 sin 2π𝑓𝑚𝑡)
. . . . . . .(1)
In eq (1) , let 𝑓 𝑡 = 𝑒𝑗β sin 2π𝑓𝑚𝑡
is a periodic function with
𝑇 =
1
𝑓𝑚
We know exponential Fourier series,
𝑓 𝑡 = σ𝑛=−∞
∞
𝐶𝑛 𝑒𝑗𝑛𝜔0𝑡
,where 𝜔0 =
2𝜋
𝑇
= 2𝜋𝑓
𝑚
and 𝐶𝑛 =
1
𝑇
‫׬‬−𝑇/2
𝑇/2
𝑓 𝑡 𝑒−𝑗𝑛𝜔0𝑡
𝑑𝑡
𝑒𝑗β sin 2π𝑓𝑚𝑡
= σ𝑛=−∞
∞
𝐶𝑛 𝑒𝑗𝑛2π𝑓𝑚𝑡
. . . . . .(2)
Cn = fm‫׬‬−1/𝑓𝑚
1/𝑓𝑚
𝑒𝑗𝛽𝑠𝑖𝑛2𝜋𝑓𝑚𝑡
.𝑒−𝑗𝑛2𝜋𝑓𝑚𝑡
.dt
= fm‫׬‬−1/𝑓𝑚
1/𝑓𝑚
𝑒𝑗(𝛽𝑠𝑖𝑛2𝜋𝑓𝑚𝑡−𝑛2𝜋𝑓𝑚𝑡)
We Know that,
Jn(x) = -1/2𝜋 ‫׬‬−𝜋
𝜋
𝑒𝑗(𝑥𝑠𝑖𝑛𝜃−𝑛𝜃)
.d𝜃
Assume 2𝜋fmt = 𝜃
or, d𝜃 = 2𝜋fmdt
or, dt = d𝜃/2𝜋𝑓m
t = -1/2fm
𝜃 = 2𝜋𝑓𝑚 . −(
1
2𝑓𝑚
) = -𝜋
t = 1/2fm
𝜃 = 2𝜋𝑓𝑚 . (
1
2𝑓𝑚
) = 𝜋
Cn = fm‫׬‬−𝜋
𝜋
𝑒𝑗(𝛽𝑠𝑖𝑛𝜃−𝑛𝜃)
.d𝜃/2fm (fm gets cancelled out)
= 1/2𝜋 ‫׬‬−𝜋
𝜋
𝑒𝑗(𝛽𝑠𝑖𝑛𝜃−𝑛𝜃)
.d𝜃 = Jn(𝛽)
Substituting Cn in equation (2)
𝑒𝑗𝛽𝑠𝑖𝑛2𝜋𝑓𝑚𝑡
= σ𝑛=−∞
∞
Jn(𝛽). 𝑒𝑗𝑛2𝜋𝑓𝑚𝑡
Now substituting this expression with the main equation
Sfm(t) = AcRc[𝑒𝑗2𝜋𝑓𝑐𝑡
. σ𝑛=−∞
∞
Jn(𝛽). 𝑒𝑗𝑛2𝜋𝑓𝑚𝑡
]
= AcRcσ𝑛=−∞
∞
Jn(𝛽). cos2𝜋(fc+nfm)t
SWBFM (t) = Ac σ𝒏=−∞
∞
Jn(𝜷). cos2𝝅(fc+nfm)t (for 𝜷 >1)
Power of Wideband Frequency Modulation
We know total power is the sum of carrier power and side
bands power,
P(t) = PC + PUSB1 + PLSB1 + PUSB2 + PLSB2 + . . . . . .
=
𝐴𝑐
2𝐽0
2(𝛽)
2𝑅
+
𝐴𝑐
2𝐽1
2(𝛽)
2𝑅
+
𝐴𝑐
2𝐽−1
2 (𝛽)
2𝑅
+
𝐴𝑐
2𝐽2
2(𝛽)
2𝑅
+
𝐴𝑐
2𝐽2
2(𝛽)
2𝑅
+ . . . . .
=
𝐴𝑐
2
2𝑅
[ J0
2(β) + J1
2(β) + J-1
2(β) + J2
2(β) + J-2
2(β) + . . . . . .]
P(t) =
𝐴𝑐
2
2𝑅
‫׬‬
𝑛=−∞
∞
𝐽𝑛
2
𝛽
∴ P(t) =
𝑨𝒄
𝟐
𝟐𝑹
Spectrum of Wideband Frequency Modulation
We know, SWBFM (t) = Ac σ𝑛=−∞
∞
Jn(𝛽). cos2𝜋(fc+nfm)t
= AcJ0(β)cos(2πfct) + AcJ1(β)cos(2πfct) +
AcJ-1(β)cos(2πfct) + AcJ2(β)cos(2πfct) + AcJ-2(β)cos(2πfct) + . . . . .
= AcJ0(β)cos2π(fct) + AcJ1(β)cos2π(fc+fm)t -
AcJ1(β)cos2π(fc-fm)t + AcJ2(β)cos2π(fc+2fm)t +
AcJ2(β)cos2π(fc-2fm)t + . . . . .
𝐴𝑐 𝐽0(𝛽)
2
𝐴𝑐 𝐽2(𝛽)
2
𝐴𝑐 𝐽2(𝛽)
2
𝐴𝑐 𝐽1(𝛽)
2
𝐴𝑐 𝐽1(𝛽)
2
(fc+fm)(fc+2fm)
(fc-fm)
(fc-2fm)
(fc)
SWBFM
Spectrum of WBFM
Practical Bandwidth using Carson’s Rule
∴ For (β+1)th Order, BW = (β+1) x 2fm
= (
∆𝑓
𝑓𝑚
+ 1) x 2fm
BW = 2(∆ f + 2fm)
For 3rd Order: BW = 6fm
For 2nd Order: BW = 4fm
For 1st Order: BW = 2fm
2
3
1
(fc+fm)
(fc+2fm)
(fc-fm)
(fc-2fm)
(fc)
Applications
The Wide-Band Frequency Modulation is used in the following fields:
• It is used in the entertainment broadcasting applications such as FM radio, TV etc.
• It is used extensively in audio communication and data transfer.
• It is used in free running Voltage Controlled Oscillator (VCO).
• It is used in commercial and defence markets.
Conclusion
When spectrum efficiency is important Narrowband FM (NBFM) is
used but when better signal quality is required Wideband FM
(WBFM) is used at the expense of greater spectrum usage. The
term WBFM is used in applications where the modulation index is
equal to or larger than 1.
References
● http://contents.kocw.net/KOCW/document/2011/korea/koyoungchai/lecturenote1
7may12.pdf
● https://www.kratosmed.com/gmcatalog/wideband-frequency-modulation-
applications-and-techniques-for-microwave-products
● https://www.researchgate.net/figure/a-The-mathematical-equation-for-Frequency-
Modulation-and-definition-of-terms_fig9_243778275
● https://www.rcet.org.in/uploads/academics/rohini_27413753398.pdf
● https://slideplayer.com/slide/5668316/
THANK
YOU
For your patience towards
our presentation

Contenu connexe

Tendances

Phase modulation
Phase modulationPhase modulation
Phase modulation
avocado1111
 
Angle modulation
Angle modulationAngle modulation
Angle modulation
Umang Gupta
 
Correlative level coding
Correlative level codingCorrelative level coding
Correlative level coding
srkrishna341
 

Tendances (20)

Pulse Code Modulation
Pulse Code ModulationPulse Code Modulation
Pulse Code Modulation
 
Phase modulation
Phase modulationPhase modulation
Phase modulation
 
Dsp 2018 foehu - lec 10 - multi-rate digital signal processing
Dsp 2018 foehu - lec 10 - multi-rate digital signal processingDsp 2018 foehu - lec 10 - multi-rate digital signal processing
Dsp 2018 foehu - lec 10 - multi-rate digital signal processing
 
Sampling Theorem
Sampling TheoremSampling Theorem
Sampling Theorem
 
digital filter design
digital filter designdigital filter design
digital filter design
 
Gaussian noise
Gaussian noiseGaussian noise
Gaussian noise
 
Digital filter structures
Digital filter structuresDigital filter structures
Digital filter structures
 
Numerical Problems on Ampitude Modulation
Numerical Problems on Ampitude ModulationNumerical Problems on Ampitude Modulation
Numerical Problems on Ampitude Modulation
 
Digital signal Processing all matlab code with Lab report
Digital signal Processing all matlab code with Lab report Digital signal Processing all matlab code with Lab report
Digital signal Processing all matlab code with Lab report
 
Angle modulation
Angle modulationAngle modulation
Angle modulation
 
Frequency modulation
Frequency modulationFrequency modulation
Frequency modulation
 
DSP_FOEHU - Lec 11 - IIR Filter Design
DSP_FOEHU - Lec 11 - IIR Filter DesignDSP_FOEHU - Lec 11 - IIR Filter Design
DSP_FOEHU - Lec 11 - IIR Filter Design
 
Chapter 5
Chapter 5Chapter 5
Chapter 5
 
Dsp lab manual
Dsp lab manualDsp lab manual
Dsp lab manual
 
Digital modulation techniques...
Digital modulation techniques...Digital modulation techniques...
Digital modulation techniques...
 
Correlative level coding
Correlative level codingCorrelative level coding
Correlative level coding
 
Frequency Modulation
Frequency ModulationFrequency Modulation
Frequency Modulation
 
Pulse Modulation ppt
Pulse Modulation pptPulse Modulation ppt
Pulse Modulation ppt
 
Chapter 4 frequency modulation
Chapter 4 frequency modulationChapter 4 frequency modulation
Chapter 4 frequency modulation
 
Sampling Theorem, Quantization Noise and its types, PCM, Channel Capacity, Ny...
Sampling Theorem, Quantization Noise and its types, PCM, Channel Capacity, Ny...Sampling Theorem, Quantization Noise and its types, PCM, Channel Capacity, Ny...
Sampling Theorem, Quantization Noise and its types, PCM, Channel Capacity, Ny...
 

Similaire à Wideband Frequency Modulation.pdf

12 Narrow_band_and_Wide_band_FM.pdf
12 Narrow_band_and_Wide_band_FM.pdf12 Narrow_band_and_Wide_band_FM.pdf
12 Narrow_band_and_Wide_band_FM.pdf
Mohamedshabana38
 
Ch4 2 _fm modulator and demodulator15
Ch4 2 _fm modulator and demodulator15Ch4 2 _fm modulator and demodulator15
Ch4 2 _fm modulator and demodulator15
Jyothirmaye Suneel
 
chap4_lec1.ppt Engineering and technical
chap4_lec1.ppt Engineering and technicalchap4_lec1.ppt Engineering and technical
chap4_lec1.ppt Engineering and technical
shreenathji26
 

Similaire à Wideband Frequency Modulation.pdf (20)

On The Fundamental Aspects of Demodulation
On The Fundamental Aspects of DemodulationOn The Fundamental Aspects of Demodulation
On The Fundamental Aspects of Demodulation
 
12 Narrow_band_and_Wide_band_FM.pdf
12 Narrow_band_and_Wide_band_FM.pdf12 Narrow_band_and_Wide_band_FM.pdf
12 Narrow_band_and_Wide_band_FM.pdf
 
Ch7 noise variation of different modulation scheme pg 63
Ch7 noise variation of different modulation scheme pg 63Ch7 noise variation of different modulation scheme pg 63
Ch7 noise variation of different modulation scheme pg 63
 
RF Module Design - [Chapter 1] From Basics to RF Transceivers
RF Module Design - [Chapter 1] From Basics to RF TransceiversRF Module Design - [Chapter 1] From Basics to RF Transceivers
RF Module Design - [Chapter 1] From Basics to RF Transceivers
 
EC8553 Discrete time signal processing
EC8553 Discrete time signal processing EC8553 Discrete time signal processing
EC8553 Discrete time signal processing
 
AM - Modulator and Demodulator
AM - Modulator and DemodulatorAM - Modulator and Demodulator
AM - Modulator and Demodulator
 
Multiband Transceivers - [Chapter 1]
Multiband Transceivers - [Chapter 1] Multiband Transceivers - [Chapter 1]
Multiband Transceivers - [Chapter 1]
 
Digital Communication
Digital CommunicationDigital Communication
Digital Communication
 
Angle modulation fm
Angle modulation fmAngle modulation fm
Angle modulation fm
 
ADC PPT.pptx
ADC PPT.pptxADC PPT.pptx
ADC PPT.pptx
 
射頻電子 - [第一章] 知識回顧與通訊系統簡介
射頻電子 - [第一章] 知識回顧與通訊系統簡介射頻電子 - [第一章] 知識回顧與通訊系統簡介
射頻電子 - [第一章] 知識回顧與通訊系統簡介
 
Ecg
EcgEcg
Ecg
 
Frequency modulation
Frequency modulationFrequency modulation
Frequency modulation
 
Ch4 2 _fm modulator and demodulator15
Ch4 2 _fm modulator and demodulator15Ch4 2 _fm modulator and demodulator15
Ch4 2 _fm modulator and demodulator15
 
lec07_DFT.pdf
lec07_DFT.pdflec07_DFT.pdf
lec07_DFT.pdf
 
Analog Communication about amplitude modulation
Analog Communication about amplitude modulationAnalog Communication about amplitude modulation
Analog Communication about amplitude modulation
 
Angel modulization in Frequency modulation and Phase modulation
Angel modulization in Frequency modulation and Phase modulationAngel modulization in Frequency modulation and Phase modulation
Angel modulization in Frequency modulation and Phase modulation
 
chap4_lec1.ppt Engineering and technical
chap4_lec1.ppt Engineering and technicalchap4_lec1.ppt Engineering and technical
chap4_lec1.ppt Engineering and technical
 
eecs242_lect3_rxarch.pdf
eecs242_lect3_rxarch.pdfeecs242_lect3_rxarch.pdf
eecs242_lect3_rxarch.pdf
 
12
1212
12
 

Plus de ArijitDhali

Plus de ArijitDhali (20)

Signal Constellation, Geometric Interpretation of Signals
Signal Constellation,  Geometric Interpretation of  SignalsSignal Constellation,  Geometric Interpretation of  Signals
Signal Constellation, Geometric Interpretation of Signals
 
Stack Queue SubRoutine
Stack Queue SubRoutineStack Queue SubRoutine
Stack Queue SubRoutine
 
Overviewing the techniques of Numerical Integration.pdf
Overviewing the techniques of Numerical Integration.pdfOverviewing the techniques of Numerical Integration.pdf
Overviewing the techniques of Numerical Integration.pdf
 
Motorola 68020.pdf
Motorola 68020.pdfMotorola 68020.pdf
Motorola 68020.pdf
 
Stereotactic Radiosurgery in Brain Metastases.pdf
Stereotactic Radiosurgery in Brain Metastases.pdfStereotactic Radiosurgery in Brain Metastases.pdf
Stereotactic Radiosurgery in Brain Metastases.pdf
 
Active Filters.pdf
Active Filters.pdfActive Filters.pdf
Active Filters.pdf
 
Celebrity Problem.pdf
Celebrity Problem.pdfCelebrity Problem.pdf
Celebrity Problem.pdf
 
SSBSC Single Side Band - Suppressed Carrier Compressed
SSBSC Single Side Band - Suppressed Carrier CompressedSSBSC Single Side Band - Suppressed Carrier Compressed
SSBSC Single Side Band - Suppressed Carrier Compressed
 
Biodiversity Hotspots in India
Biodiversity Hotspots in IndiaBiodiversity Hotspots in India
Biodiversity Hotspots in India
 
LTI Systems - With/Without Memory
LTI Systems - With/Without MemoryLTI Systems - With/Without Memory
LTI Systems - With/Without Memory
 
RLC Series Resonance
RLC Series ResonanceRLC Series Resonance
RLC Series Resonance
 
Bivariate Discrete Distribution
Bivariate Discrete DistributionBivariate Discrete Distribution
Bivariate Discrete Distribution
 
Solar Cell
Solar CellSolar Cell
Solar Cell
 
Barcode Decoder
Barcode DecoderBarcode Decoder
Barcode Decoder
 
Dijkstra's Algorithm
Dijkstra's AlgorithmDijkstra's Algorithm
Dijkstra's Algorithm
 
Conditional Probability
Conditional ProbabilityConditional Probability
Conditional Probability
 
Isomerism of Transition Metal Complex
Isomerism of Transition Metal ComplexIsomerism of Transition Metal Complex
Isomerism of Transition Metal Complex
 
Space Solar Power
Space Solar PowerSpace Solar Power
Space Solar Power
 
Types of function call
Types of function callTypes of function call
Types of function call
 
Power Series - Legendre Polynomial - Bessel's Equation
Power Series - Legendre Polynomial - Bessel's EquationPower Series - Legendre Polynomial - Bessel's Equation
Power Series - Legendre Polynomial - Bessel's Equation
 

Dernier

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
Epec Engineered Technologies
 
scipt v1.pptxcxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxx...
scipt v1.pptxcxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxx...scipt v1.pptxcxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxx...
scipt v1.pptxcxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxx...
HenryBriggs2
 

Dernier (20)

AIRCANVAS[1].pdf mini project for btech students
AIRCANVAS[1].pdf mini project for btech studentsAIRCANVAS[1].pdf mini project for btech students
AIRCANVAS[1].pdf mini project for btech students
 
Generative AI or GenAI technology based PPT
Generative AI or GenAI technology based PPTGenerative AI or GenAI technology based PPT
Generative AI or GenAI technology based PPT
 
Thermal Engineering-R & A / C - unit - V
Thermal Engineering-R & A / C - unit - VThermal Engineering-R & A / C - unit - V
Thermal Engineering-R & A / C - unit - V
 
Computer Networks Basics of Network Devices
Computer Networks  Basics of Network DevicesComputer Networks  Basics of Network Devices
Computer Networks Basics of Network Devices
 
Tamil Call Girls Bhayandar WhatsApp +91-9930687706, Best Service
Tamil Call Girls Bhayandar WhatsApp +91-9930687706, Best ServiceTamil Call Girls Bhayandar WhatsApp +91-9930687706, Best Service
Tamil Call Girls Bhayandar WhatsApp +91-9930687706, Best Service
 
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
 
Minimum and Maximum Modes of microprocessor 8086
Minimum and Maximum Modes of microprocessor 8086Minimum and Maximum Modes of microprocessor 8086
Minimum and Maximum Modes of microprocessor 8086
 
scipt v1.pptxcxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxx...
scipt v1.pptxcxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxx...scipt v1.pptxcxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxx...
scipt v1.pptxcxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxx...
 
Double Revolving field theory-how the rotor develops torque
Double Revolving field theory-how the rotor develops torqueDouble Revolving field theory-how the rotor develops torque
Double Revolving field theory-how the rotor develops torque
 
Block diagram reduction techniques in control systems.ppt
Block diagram reduction techniques in control systems.pptBlock diagram reduction techniques in control systems.ppt
Block diagram reduction techniques in control systems.ppt
 
kiln thermal load.pptx kiln tgermal load
kiln thermal load.pptx kiln tgermal loadkiln thermal load.pptx kiln tgermal load
kiln thermal load.pptx kiln tgermal load
 
Online food ordering system project report.pdf
Online food ordering system project report.pdfOnline food ordering system project report.pdf
Online food ordering system project report.pdf
 
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
 
2016EF22_0 solar project report rooftop projects
2016EF22_0 solar project report rooftop projects2016EF22_0 solar project report rooftop projects
2016EF22_0 solar project report rooftop projects
 
Bhubaneswar🌹Call Girls Bhubaneswar ❤Komal 9777949614 💟 Full Trusted CALL GIRL...
Bhubaneswar🌹Call Girls Bhubaneswar ❤Komal 9777949614 💟 Full Trusted CALL GIRL...Bhubaneswar🌹Call Girls Bhubaneswar ❤Komal 9777949614 💟 Full Trusted CALL GIRL...
Bhubaneswar🌹Call Girls Bhubaneswar ❤Komal 9777949614 💟 Full Trusted CALL GIRL...
 
Employee leave management system project.
Employee leave management system project.Employee leave management system project.
Employee leave management system project.
 
Unleashing the Power of the SORA AI lastest leap
Unleashing the Power of the SORA AI lastest leapUnleashing the Power of the SORA AI lastest leap
Unleashing the Power of the SORA AI lastest leap
 
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
 
Computer Lecture 01.pptxIntroduction to Computers
Computer Lecture 01.pptxIntroduction to ComputersComputer Lecture 01.pptxIntroduction to Computers
Computer Lecture 01.pptxIntroduction to Computers
 
School management system project Report.pdf
School management system project Report.pdfSchool management system project Report.pdf
School management system project Report.pdf
 

Wideband Frequency Modulation.pdf

  • 1. WIDEBAND FREQUENCY MODULATION Presented By : Group 9 Ayan Das ▪ Arnab Paul ▪ Arnab Chatterjee ▪ Arijit Dhali 11500320072 ▪ 11500320075 ▪ 11500320076 ▪ 11500320078
  • 2. TABLE OF CONTENTS WBFM Overview 01 Mathematical Analysis 02 Power and Bandwidth 03 Conclusion and Refernces 04 Frequency Modulation 05
  • 3. In this article, we are going to address applications and techniques for WBFM with modulation indexes much larger than 1, going up to 100 and beyond. In such applications spectral efficiency is less important and sometimes large spectral spread is actually desired. The purpose of this article is to present some major applications in the commercial and defence markets. Within this framework, the common techniques of generating WBFM are presented. Abstract
  • 4. What is Frequency Modulation? Frequency modulation (FM) is the encoding of information in a carrier wave by varying the instantaneous frequency of the modulating wave. The technology is used in telecommunications, radio broadcasting, signal processing, and computing. There are 2 types of Frequency Modulation: • Narrow Band Frequency Modulation • Wide Band Frequency Modulation
  • 5. From the expression of Frequency Modulation we can narrate, S(t) = Accos(wct + βsin(wmt)) where, Ac = Carrier Amplitude β = Modulation Index However when β>1, then FM is said to be Wide Band FM (WBFM) When Wideband Frequency Modulation occurs?
  • 6. Direct Method Methods of Generating Wideband Frequency Modulation Indirect Method Voltage Controlled Oscillator NBFM Modulator Frequency Multiplier Modulating Signal Modulating Signal WBFM Wave WBFM Wave NBFM Wave Accos(2πfct)
  • 7. Bessel Function: Wideband Frequency Modulation using Bessel Function Jn(x) = 𝟏 𝟐𝝅 ‫׬‬ −𝝅 𝝅 𝒆𝒋(𝒙 𝐬𝐢𝐧 𝜽−𝒏𝜽) 𝒅𝜽 Properties of Bessel Function: • Jn(x) ↓ when n ↑ ∴ J0(x) > J1(x) > J2(x)… • J-n(x) = (-1)nJn(x) ∴ J-n(x) = Jn(x), when n is even J-n(x) = -Jn(x), when n is odd • ‫׬‬ 𝒏=−∞ ∞ 𝑱𝒏 𝟐 𝒙 = 𝟏 • Jn(x) always result in real quantity
  • 8. Plot of Bessel Function
  • 9. Mathematical analysis General Expression of WBFM: SFM (t) = AC cos [2π𝑓 𝑐 + β sin(2π 𝑓 𝑚𝑡)] = 𝐴𝐶 cos θ . Thus, cos 𝜃 = Re e𝑗𝜃 Since, 𝑒𝑗θ = cos θ + j sin θ Therefore, 𝑆𝐹𝑀 𝑡 = 𝐴𝐶 𝑅𝑒 𝑒𝑗 2𝜋𝑓𝑐𝑡+𝛽 sin 2π𝑓𝑚𝑡 = 𝐴𝐶 𝑅𝑒 𝑒𝑗 2𝜋𝑓𝑐𝑡 + 𝑒𝑗(𝛽 sin 2π𝑓𝑚𝑡) . . . . . . .(1) In eq (1) , let 𝑓 𝑡 = 𝑒𝑗β sin 2π𝑓𝑚𝑡 is a periodic function with 𝑇 = 1 𝑓𝑚 We know exponential Fourier series, 𝑓 𝑡 = σ𝑛=−∞ ∞ 𝐶𝑛 𝑒𝑗𝑛𝜔0𝑡 ,where 𝜔0 = 2𝜋 𝑇 = 2𝜋𝑓 𝑚 and 𝐶𝑛 = 1 𝑇 ‫׬‬−𝑇/2 𝑇/2 𝑓 𝑡 𝑒−𝑗𝑛𝜔0𝑡 𝑑𝑡 𝑒𝑗β sin 2π𝑓𝑚𝑡 = σ𝑛=−∞ ∞ 𝐶𝑛 𝑒𝑗𝑛2π𝑓𝑚𝑡 . . . . . .(2) Cn = fm‫׬‬−1/𝑓𝑚 1/𝑓𝑚 𝑒𝑗𝛽𝑠𝑖𝑛2𝜋𝑓𝑚𝑡 .𝑒−𝑗𝑛2𝜋𝑓𝑚𝑡 .dt = fm‫׬‬−1/𝑓𝑚 1/𝑓𝑚 𝑒𝑗(𝛽𝑠𝑖𝑛2𝜋𝑓𝑚𝑡−𝑛2𝜋𝑓𝑚𝑡) We Know that, Jn(x) = -1/2𝜋 ‫׬‬−𝜋 𝜋 𝑒𝑗(𝑥𝑠𝑖𝑛𝜃−𝑛𝜃) .d𝜃 Assume 2𝜋fmt = 𝜃 or, d𝜃 = 2𝜋fmdt or, dt = d𝜃/2𝜋𝑓m
  • 10. t = -1/2fm 𝜃 = 2𝜋𝑓𝑚 . −( 1 2𝑓𝑚 ) = -𝜋 t = 1/2fm 𝜃 = 2𝜋𝑓𝑚 . ( 1 2𝑓𝑚 ) = 𝜋 Cn = fm‫׬‬−𝜋 𝜋 𝑒𝑗(𝛽𝑠𝑖𝑛𝜃−𝑛𝜃) .d𝜃/2fm (fm gets cancelled out) = 1/2𝜋 ‫׬‬−𝜋 𝜋 𝑒𝑗(𝛽𝑠𝑖𝑛𝜃−𝑛𝜃) .d𝜃 = Jn(𝛽) Substituting Cn in equation (2) 𝑒𝑗𝛽𝑠𝑖𝑛2𝜋𝑓𝑚𝑡 = σ𝑛=−∞ ∞ Jn(𝛽). 𝑒𝑗𝑛2𝜋𝑓𝑚𝑡 Now substituting this expression with the main equation Sfm(t) = AcRc[𝑒𝑗2𝜋𝑓𝑐𝑡 . σ𝑛=−∞ ∞ Jn(𝛽). 𝑒𝑗𝑛2𝜋𝑓𝑚𝑡 ] = AcRcσ𝑛=−∞ ∞ Jn(𝛽). cos2𝜋(fc+nfm)t SWBFM (t) = Ac σ𝒏=−∞ ∞ Jn(𝜷). cos2𝝅(fc+nfm)t (for 𝜷 >1)
  • 11. Power of Wideband Frequency Modulation We know total power is the sum of carrier power and side bands power, P(t) = PC + PUSB1 + PLSB1 + PUSB2 + PLSB2 + . . . . . . = 𝐴𝑐 2𝐽0 2(𝛽) 2𝑅 + 𝐴𝑐 2𝐽1 2(𝛽) 2𝑅 + 𝐴𝑐 2𝐽−1 2 (𝛽) 2𝑅 + 𝐴𝑐 2𝐽2 2(𝛽) 2𝑅 + 𝐴𝑐 2𝐽2 2(𝛽) 2𝑅 + . . . . . = 𝐴𝑐 2 2𝑅 [ J0 2(β) + J1 2(β) + J-1 2(β) + J2 2(β) + J-2 2(β) + . . . . . .] P(t) = 𝐴𝑐 2 2𝑅 ‫׬‬ 𝑛=−∞ ∞ 𝐽𝑛 2 𝛽 ∴ P(t) = 𝑨𝒄 𝟐 𝟐𝑹
  • 12. Spectrum of Wideband Frequency Modulation We know, SWBFM (t) = Ac σ𝑛=−∞ ∞ Jn(𝛽). cos2𝜋(fc+nfm)t = AcJ0(β)cos(2πfct) + AcJ1(β)cos(2πfct) + AcJ-1(β)cos(2πfct) + AcJ2(β)cos(2πfct) + AcJ-2(β)cos(2πfct) + . . . . . = AcJ0(β)cos2π(fct) + AcJ1(β)cos2π(fc+fm)t - AcJ1(β)cos2π(fc-fm)t + AcJ2(β)cos2π(fc+2fm)t + AcJ2(β)cos2π(fc-2fm)t + . . . . . 𝐴𝑐 𝐽0(𝛽) 2 𝐴𝑐 𝐽2(𝛽) 2 𝐴𝑐 𝐽2(𝛽) 2 𝐴𝑐 𝐽1(𝛽) 2 𝐴𝑐 𝐽1(𝛽) 2 (fc+fm)(fc+2fm) (fc-fm) (fc-2fm) (fc) SWBFM Spectrum of WBFM
  • 13. Practical Bandwidth using Carson’s Rule ∴ For (β+1)th Order, BW = (β+1) x 2fm = ( ∆𝑓 𝑓𝑚 + 1) x 2fm BW = 2(∆ f + 2fm) For 3rd Order: BW = 6fm For 2nd Order: BW = 4fm For 1st Order: BW = 2fm 2 3 1 (fc+fm) (fc+2fm) (fc-fm) (fc-2fm) (fc)
  • 14. Applications The Wide-Band Frequency Modulation is used in the following fields: • It is used in the entertainment broadcasting applications such as FM radio, TV etc. • It is used extensively in audio communication and data transfer. • It is used in free running Voltage Controlled Oscillator (VCO). • It is used in commercial and defence markets.
  • 15. Conclusion When spectrum efficiency is important Narrowband FM (NBFM) is used but when better signal quality is required Wideband FM (WBFM) is used at the expense of greater spectrum usage. The term WBFM is used in applications where the modulation index is equal to or larger than 1.
  • 16. References ● http://contents.kocw.net/KOCW/document/2011/korea/koyoungchai/lecturenote1 7may12.pdf ● https://www.kratosmed.com/gmcatalog/wideband-frequency-modulation- applications-and-techniques-for-microwave-products ● https://www.researchgate.net/figure/a-The-mathematical-equation-for-Frequency- Modulation-and-definition-of-terms_fig9_243778275 ● https://www.rcet.org.in/uploads/academics/rohini_27413753398.pdf ● https://slideplayer.com/slide/5668316/
  • 17. THANK YOU For your patience towards our presentation