B. FM modulated signal is transmitted over a noisy transmitter modulator, with the power spectral density of noise being as shown in Figure 1 (W is the information frequency with 1 KHz, Sn (f) is the power spectral density for the noise). The FM equation and transmitter is shown in figure 2. 1. Derive the FM modulated signal for narrowband modulation 2. Determine the power of the narrowband FM modulation 3. Determine the signal to noise ratio for the narrowband FM modulation

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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B. FM modulated signal is transmitted over a noisy transmitter modulator, with the power
spectral density of noise being as shown in Figure 1 (W is the information frequency with
1 KHz, Sn (f) is the power spectral density for the noise). The FM equation and
transmitter is shown in figure 2.
1. Derive the FM modulated signal for narrowband modulation
2. Determine the power of the narrowband FM modulation
3. Determine the signal to noise ratio for the narrowband FM modulation
-A, cos 2 +2mk, me) dr
Baseband
signal Integrator
Narowbend
phase
modulator
Frequency
matiplier
FM sgnal
Crystal-
contralled
oscillator
Figure 1
Figure 2
Transcribed Image Text:B. FM modulated signal is transmitted over a noisy transmitter modulator, with the power spectral density of noise being as shown in Figure 1 (W is the information frequency with 1 KHz, Sn (f) is the power spectral density for the noise). The FM equation and transmitter is shown in figure 2. 1. Derive the FM modulated signal for narrowband modulation 2. Determine the power of the narrowband FM modulation 3. Determine the signal to noise ratio for the narrowband FM modulation -A, cos 2 +2mk, me) dr Baseband signal Integrator Narowbend phase modulator Frequency matiplier FM sgnal Crystal- contralled oscillator Figure 1 Figure 2
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