A transmitter transmits a signal st with carrier frequency


Problem-1.Multipah channel models

A transmitter transmits a signal s(t) with carrier frequency fc. The signal reaches the receiving antennas through three paths. The path gains are a1, a2, and a3. The path delays are t1, t2, and t3. The Doppler shifts at the carrier frequency are f1, f2, and f3. What is the received signal? What is the transfer function characterizing the channel between the receiving and transmitting antenna?

Problem -2. Channel Parameters

Carrier frequency is 1 GHz. Moving speed is 2 m/sec. In the following, what are the reasonable numbers in indoors for the following parameters

a.) coherent bandwidth:

b.) coherent time:

c.) delay spread:

d.) Doppler spread:

Choose (just pick one value for each parameter) your answers from the following values:

1.) 1 sec; 2.)0.1 sec; 3.)0.01 sec; 4.)1 msec; 5.)0.1 msec; 6.)0.01 msec; 7.)1 msec; 8.)0.1 msec; 9.)0.01 msec; 10.)1 nsec; 11.)1 GHz; 12.)0.1 GHz; 13.)0.01 GHz; 14.)1 MHz; 15.)0.1 MHz; 16.)0.01 MHz; 17.)1 KHz; 18.)0.1 KHz; 19.)0.01 KHz; 20.) 1 Hz;

Problem 3.  System Design

The delay spread in a given environment TD is 5 micro seconds.

The maximum Doppler spread FD is 200Hz.

We would like to design a digital communication system in this environment such that

1. Distortion per data symbol is negligible

2. The time variation during a symbol period is negligible

What is the appropriate range of the symbol duration in this communication system?

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Anonymous user

5/23/2016 2:13:20 AM

The assignment is all about channel parameters and multiple channel models. Q1. A transmitter broadcasts a signal s(t) having carrier frequency fc. The signal achieves the receiving antennas via three paths. The path gains are a1, a2, and a3. The path delays are t1, t2, and t3. The Doppler shifts at the carrier frequency are f1, f2, and f3. Determine the received signal? Determine the transfer function characterizing the channel between the receiving and broadcasting antenna? Q2. The delay spread in a particular environment TD is 5 micro seconds. The maximum Doppler spread FD is 200Hz. We would like to design a digital communication system in this atmosphere in such a way that: a) Distortion per data symbol is negligible b) The time variation throughout a symbol period is negligible Determine the suitable range of the symbol duration in this communication system?