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CS6304 Analog & Digital Communication B.E Question Bank : valliammai.co.in

Name of the College : Valliammai Engineering College
University : Anna University
Department : Information Technology
Subject Code/Name : CS6304-Analog & Digital Communication
Degree : B.Tech – IT
Year : II
Semester : III
Document Type : Question Bank
Website : valliammai.co.in

Download :https://www.pdfquestion.in/uploads/va…munication.pdf

Valliammai Analog & Digital Communication

Unit-I

Part-A :
1.What is demodulation and modulation
2.Draw the spectrum of FM signal
3.Define amplitude modulation and SNR.

Related : Valliammai Engineering College CS2302 Computer Networks B.E Question Bank : www.pdfquestion.in/2855.html

4.Differentiate between narrow band and wide band FM signal
5.Define modulation index, bandwidth efficiency, Degree of Modulation.
6.What is the purpose of limiter in FM receiver
7.If a 10v carrier is amplitude modulated by two different frequencies with amplitudes 2V and 3V respectively. Find the modulation index. (or) Consider an AM signal x(t)=2cos(2pfct) +0.5cos(2pfct).cos(2pfct).Find the modulation index used to generate the signal.
8.What is meant by double conversion receiver?
9.Write down the mathematical expression for angle modulated wave
10.Differentiate between an analog signal and a digital signal.


11.Define modulation depth for a FM System and highlight its impact on the spectral occupation.
12.Define a continuous signal and Discrete signal
13.Define thermal noise, flicker noise, short noise.
14.Distinguish between FM and PM.
15.What is bandwidth need to transmit 4khz voice signal using AM
16.Write one advantage and one disadvantage of delta modulation
17.Distinguish between power efficiency and spectral efficiency
18.What is IST? What is the reason for it occurrence?
19.Find the capacity of a channel having 50 khz bandwidth and produces SNR of 1023 at the output.
20.Define internal noise and list all the internal noise.

Part-B :
1.Define FM and PM modulation and write their equations. Describe the generation of FM wave using Armstrong method.
2.An AM signal has the equationv(t) = [15+4sin(44x103t)] sin (46.5x106t)V
1. Find the carrier frequency
2. Find the frequency of the modulating signal.
3. Find the value of m.
4. Find the peak voltage of the unmodulated carrier.
5. Sketch the signal in the time domain, showing voltage and time scales.
3. For a modulation coefficient m = 0.2 and carrier power Pc = 1000 W, determine the following.
1. Total sideband power
2. Upper and lower sideband power
3. Modulated carrier power
4. Total transmitted power.
4. a. Illustrate the relationship between frequency modulation and phase modulation with a block diagram.
b. Describe the average power required for an angle modulated wave with mathematical expression.
5. a. With neat block diagram describe AM transmitter
b. Derive for carrier power and transmitter power in AM in terms of modulation index.
6. a. Explain the function of every block of superhetrodyne FM receiver.
b. Differentiate AM , FM & PM
7. a. Explain the Principles of amplitude modulation
b. Write a note on frequency spectrum analysis of angle modulated waves. Explain the band width requirements of angle modulated waves
8. (i) A modulating signal of 2 cos5000t is amplitude modulated over a carrier signal of 5cos20000t . Derive expressions for the modulation index, LSB and VSB frequencies, Bandwidth and the ratio of Side Band Power in the Total Power of AM wave. (8)
(ii) Explain the principle of Angle Modulation. Derive and explain phase deviation, Modulation index, frequency deviation and percent modulation. (8)
9. (i) An audio frequency signal 10 sin 2*3.14* 500t is used to amplitude modulate a carrier of 50 sin 5*3.14*10^5 t. Calculate
(1) Modulation index (6)
(2) Side band frequencies (5)
(3) BW required (5)
4) (i) Compare FM and AM. (12)
(ii) The phase deviation constant in a phase modulation system is K = 0.01 rad/v. Calculate the maximum phase deviation when a modulating signal of 10 V is applied?
10. (i) Distinguish between FM and PM by giving its mathematical analysis. (8)
(ii) Derive the relationship between the voltage amplitudes of the side band frequencies and the carrier and draw the frequency spectrum. (8)
11. In an AM modulator, 500 KHz carrier of amplitude 20 V is modulated by 10 KHz modulating signal which causes a change in the output wave of ?7.5 V . Determine :
(1) Upper and lower side band frequencies
(2) Modulation Index
(3) Peak amplitude of upper and lower side frequency
(4) Maximum and minimum amplitudes of envelope
12. Explain about different types of noises in communication systems.

Unit-II

Part-A :
1.Draw the constellation diagram of QPSK signal.
2.Find the minimum sampling frequency for a signal having frequency from 10mhz to 10.2 mhz in order to avoid aliasing
3.What do you meant by FSK
4.What is M–ary encoding
5.Draw 8-QAM phasor diagram
6.Determine the peak frequency deviation and minimum bandwidth for a binary FSK signal with a mark frequency of 49 khz, a space frequency of 51 khz
7.Define space division multiplexing
8.Draw the block diagram of BPSK Transmitter . CS6304-Analog and Digital Communication 3
9.What is meant by fading
10.Define sampling theorem
11.Draw the null modem circuit.
12.What is binary phase shift keying?
13.Write down the expression for peak frequency deviation of FSK.
14.Define Nyquist sampling theorem.
15.Draw the block diagram of QPSK Transmitter.
16.Differentiate between PSK from DPSK.
17.What is the approximation bandwidth required to transmit a signal at 4khz using FM with frequency deviation of 75khz.

Part-B :
1. With a neat schematic diagram, explain the balanced ring modulator of BPSK.
2. a. Describe the two techniques of achieving carrier recovery circuit.
b. Explain the generation and detection of PSK system with the help of block diagrams.
3. a. For QPSK modulator with an input data rate equal to 12 Mbps and a carrier frequency of 100 MHz. determine the following.
i. Minimum double sided Nyquist bandwidth
ii. Baud Rate
iii. Sketch the output spectrum
b. Define QAM and explain the working of 8-QAM transmitter and receiver with a block diagram.
4. a. Compare the different digital modulation schemes in terms of bandwidth bit error rate and efficiency.
b. For the DPSK modulator , determine the output phase sequence for the following input bit sequence : 11001100101010. Assume that the reference bit = 1.
5. Explain BPSK transmitter and receiver with block diagram and derive an expression for its probability of error.
6. Describe the working of QPSK transmitter and receiver. Determine its bandwidth efficiency and compare it with other m-ary PSK schemes.
7. a. Draw the block diagram of QPSK modulator, demodulator and explain the principle of operation.
b. With neat constellation diagram, explain the operation of QAM transmitter. List out its merits over PSK.
8. a. Explain the operation of the binary FSK modulator and demodulator with its constellation diagram.
b. Write a note on QPSK.
c. Write a note on DPSK.
9. (i) Draw FSK Transmitter and explain. Describe its Bandwidth Considerations. (8)
(ii) For a BPSK modulator with a Carrier frequency of 70 MHz and an input bit rate of 10 Mbps, determine the maximum and minimum upper and lower side frequencies, draw the output spectrum, determine the minimum Nyquist bandwidth, and calculate the baud (Assume f= 5MHz)
10. (i) Draw and explain the operations of Non-coherent and coherent FSK modulators. (8)
(ii) Draw QPSK modulator and explain. Describe its Bandwidth considerations. (8)
11. (i) Explain the principle of FSK transmitter and receiver. (10)
(ii) Write short notes on the spectrum and bandwidth of FSK. (6)
12. Draw the block diagram of FSK receiver and explain the operation. Determine the :
(i) peak frequency deviation
(ii) minimum bandwidth
(iii) baud for FSK signal with a mark frequency of 49 kHz, space frequency of 51 kHz, and input bit rate of 2 kbps.
13. What is known as Binary phase shift keying? Discuss in detail the BPSK transmitter and Receiver and also obtain the minimum double sided Nyquist bandwidth.

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