modulación analógica (am-fm) cx eléctricas 09 – e.tapia

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Modulación Analógica (AM- FM) Cx Eléctricas 09 – E.Tapia

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Page 1: Modulación Analógica (AM-FM) Cx Eléctricas 09 – E.Tapia

Modulación Analógica (AM-FM)

Cx Eléctricas 09 – E.Tapia

Page 2: Modulación Analógica (AM-FM) Cx Eléctricas 09 – E.Tapia

Modulación de Onda CC (CW)

Representación en dominios t-f Efectos del ruido en los receptores

correspondientes

Page 3: Modulación Analógica (AM-FM) Cx Eléctricas 09 – E.Tapia

Modulation -Demodulation

Ix transmission in presence of noise Ix bearing signals or baseband signals Transmitter-Channel-Receiver Frequency shifting on Tx – Modulation using a carrier Frequency shift back on Rx –Demodulation

Page 4: Modulación Analógica (AM-FM) Cx Eléctricas 09 – E.Tapia

Modulation

Carrier is sinusoidal wave

Amplitude, frequency, or

phase are varied with a

modulating wave - signal

Page 5: Modulación Analógica (AM-FM) Cx Eléctricas 09 – E.Tapia

Amplitude Modulation

Message signal m(t) and

carrier c(t) are independent

Carrier amplitude is varied

about a mean value (Ac),

linearly with m(t)

Ka is the modulation sensiviy

measured in 1/volt

Page 6: Modulación Analógica (AM-FM) Cx Eléctricas 09 – E.Tapia

Some issues on AM

Overmodulation

Leads to envelope distortion. The demodulator will

track a false envelope and information will be lost.

fc >>>> W – the message bandwidth

Easy envelope visualization and tracking

Page 7: Modulación Analógica (AM-FM) Cx Eléctricas 09 – E.Tapia

Frequency Domain

Page 8: Modulación Analógica (AM-FM) Cx Eléctricas 09 – E.Tapia

Note that

Mod-Demod are implemented using non-linear devices

Demod are often envelope detectors

AM Power and AM Bandwith

Not efficient at power use (tx of c(t))

Sidebands are related each other >>>> just one is needed

Hence >>>> avoid c(t) transmission and duplicate sidebands

Page 9: Modulación Analógica (AM-FM) Cx Eléctricas 09 – E.Tapia

Linear Modulation

Page 10: Modulación Analógica (AM-FM) Cx Eléctricas 09 – E.Tapia

DSB-SC- (Double SideBand-Supressed Carrier)

Page 11: Modulación Analógica (AM-FM) Cx Eléctricas 09 – E.Tapia

Coherent Detection

Page 12: Modulación Analógica (AM-FM) Cx Eléctricas 09 – E.Tapia

Note that

Non coherent detection may

lead to null quadrature effect

Need coherent local oscillator

at demodulation >>

complexity >> the price

Page 13: Modulación Analógica (AM-FM) Cx Eléctricas 09 – E.Tapia

SSB MOdulation

DSB-SC + Filtering for Sideband Removal

Highly selective filters from cristal oscillators

Coherent detector >> low power pilot carrier addition is added at

transmission

Page 14: Modulación Analógica (AM-FM) Cx Eléctricas 09 – E.Tapia

VSB – Vestigial Sideband Modulation

Page 15: Modulación Analógica (AM-FM) Cx Eléctricas 09 – E.Tapia

More on VSB

Page 16: Modulación Analógica (AM-FM) Cx Eléctricas 09 – E.Tapia

Frequency Modulation (FM)

f is the frequency deviation

is the modulation index defined as f /fm

Page 17: Modulación Analógica (AM-FM) Cx Eléctricas 09 – E.Tapia

Which is the FM angle?

<< 1 radian is known as narrowband FM

>> 1 radian is known as wideband FM

Page 18: Modulación Analógica (AM-FM) Cx Eléctricas 09 – E.Tapia

Noise in CW Modulation

Chanel Model is AWGN

Power spectral density is No/2

Receiver model defined by a

bandpass filter and a

demodulator model

Page 19: Modulación Analógica (AM-FM) Cx Eléctricas 09 – E.Tapia

SNRs

SNR I (Input)

Ratio of the average power of the modulated

signal s(t) to the average power of the filtered

noise

SNR o (Output)

Ratio of the averaged power of the

demodulated signal to the power of noise

measured at the receiver output

SNR c (Channel)

Ratio of the averaged power of the modulated

signal to the average power of noise in the

message bandwith both at the receiver input

Page 20: Modulación Analógica (AM-FM) Cx Eléctricas 09 – E.Tapia

Noise in DSB Coherent Detection

s(t) is the DSB component of

x(t)

C is system dependent scaling

factor

m(t) sample from stationary

process of zero mean and S(f)

Hence compute SNRC, DSB

Page 21: Modulación Analógica (AM-FM) Cx Eléctricas 09 – E.Tapia

Figure of Merit in Coherent Detection

The quadrature component of noise is rejected in coherent detection

The average power of filtered noise n(t) is

Same for nI(t)

Page 22: Modulación Analógica (AM-FM) Cx Eléctricas 09 – E.Tapia

Figure ….

The same holds for SSB

NO way to improve SNR

by increasig bandwith use

in DSB w.r.t SSB

The effect of modulation

is just frequenxy shifting

Page 23: Modulación Analógica (AM-FM) Cx Eléctricas 09 – E.Tapia

Noise in AM

From the SNR at the channel (C, AM) we desire the SNR at the output , demodulator – envelope

Page 24: Modulación Analógica (AM-FM) Cx Eléctricas 09 – E.Tapia

Phasorial Analysis

Page 25: Modulación Analógica (AM-FM) Cx Eléctricas 09 – E.Tapia

Figures of Merit

Always << 1for AM envelope

receivers

Equal to 1 for DSB, SSB

Caused by waste of power on

carrir transmission

Existence of threshold effect

Page 26: Modulación Analógica (AM-FM) Cx Eléctricas 09 – E.Tapia

Threshold effect in AM Detectors

Page 27: Modulación Analógica (AM-FM) Cx Eléctricas 09 – E.Tapia

Noise Effects in FM

Limiter: clipp and round so that amplitude is independent of the carrier amplitude at the receiver input.

Page 28: Modulación Analógica (AM-FM) Cx Eléctricas 09 – E.Tapia

Noise Model for FM

R(t) is Rayleigh Phase is uniform

Page 29: Modulación Analógica (AM-FM) Cx Eléctricas 09 – E.Tapia

Signal Model for FM

Page 30: Modulación Analógica (AM-FM) Cx Eléctricas 09 – E.Tapia

Signal and Noise in FM

Page 31: Modulación Analógica (AM-FM) Cx Eléctricas 09 – E.Tapia

Discriminator Output

Provided the carrier to noise is high

Page 32: Modulación Analógica (AM-FM) Cx Eléctricas 09 – E.Tapia

FM Discriminator: S2N

Page 33: Modulación Analógica (AM-FM) Cx Eléctricas 09 – E.Tapia

Cont’

The carrier power has noise quoting effect in FM Recall that

The average signal transmitted power is kf2P

Page 34: Modulación Analógica (AM-FM) Cx Eléctricas 09 – E.Tapia

How can we improve S2N in FM?

Page 35: Modulación Analógica (AM-FM) Cx Eléctricas 09 – E.Tapia

The conclusion

FM provides a mechanism for the exchange of improved noise performance

by increased transmission bandwidth

FM can also reject other FM signals closed to the carrier frequency provided

interferent signal are weaker w.r.t. the target FM input

Page 36: Modulación Analógica (AM-FM) Cx Eléctricas 09 – E.Tapia

Threshold Effect in FM

Assumption Carrier to Noise ratio at the discriminator input >> 1

Violation to this assumption FM receiver breaks. From breaks to sputtering sounds. The

formula does not hold.

Page 37: Modulación Analógica (AM-FM) Cx Eléctricas 09 – E.Tapia

No signal but Noise

Ac >> nI , nQ

Ac << nI , nQ

P1 noves to the origin and random phase is observed

is around

Page 38: Modulación Analógica (AM-FM) Cx Eléctricas 09 – E.Tapia

Alternatevely

Clicks are heard after the low pass filter

Page 39: Modulación Analógica (AM-FM) Cx Eléctricas 09 – E.Tapia

Threshold Effect

As is decreased the

rate of clicks grows

Rate of clicks is high

threshold occurs

Page 40: Modulación Analógica (AM-FM) Cx Eléctricas 09 – E.Tapia

Designing an FM System

Given D ()

Compute BT

Given BT and N0 (Noise

power per unit bandwidth)

Determine AC to keep

above the threshold

Page 41: Modulación Analógica (AM-FM) Cx Eléctricas 09 – E.Tapia

FM Threshold Reduction

FM demodulator with negative feeback (FMFB) or PLL

Page 42: Modulación Analógica (AM-FM) Cx Eléctricas 09 – E.Tapia

FM Threshold Reduction

The VCO output

The phase comparator output

Page 43: Modulación Analógica (AM-FM) Cx Eléctricas 09 – E.Tapia

FM Threshold Reduction (cont)

Page 44: Modulación Analógica (AM-FM) Cx Eléctricas 09 – E.Tapia

FM Threshold Reduction (cont)

Page 45: Modulación Analógica (AM-FM) Cx Eléctricas 09 – E.Tapia

FM Threshold Reduction (cont)

Page 46: Modulación Analógica (AM-FM) Cx Eléctricas 09 – E.Tapia

Linear Model of the PLL-FM Demodulator

Page 47: Modulación Analógica (AM-FM) Cx Eléctricas 09 – E.Tapia

PreEmphasis - Deemphasis

Pre at transmitter

De- at the receiver

Page 48: Modulación Analógica (AM-FM) Cx Eléctricas 09 – E.Tapia

Pre-emphasis & De-emphasis

Pre at transmitter

De- at the receiver

Page 49: Modulación Analógica (AM-FM) Cx Eléctricas 09 – E.Tapia

Conclusions