Great Deal! Get Instant $10 FREE in Account on First Order + 10% Cashback on Every Order Order Now

Problem-1.Multipah channel models A transmitter transmits a signal s(t) with carrier frequency f c . The signal reaches the receiving antennas through three paths. The path gains are a 1 , a 2 , and a...

1 answer below »
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; XXXXXXXXXXsec; XXXXXXXXXXsec; 4.)1 msec; XXXXXXXXXXmsec; XXXXXXXXXXmsec; 7.)1 msec; XXXXXXXXXXmsec; XXXXXXXXXXmsec; 10.)1 nsec; 11.)1 GHz; XXXXXXXXXXGHz; XXXXXXXXXXGHz; 14.)1 MHz; XXXXXXXXXXMHz; XXXXXXXXXXMHz; 17.)1 KHz; XXXXXXXXXXKHz; XXXXXXXXXXKHz; XXXXXXXXXXHz;
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?
Document Preview:

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; XXXXXXXXXXsec; XXXXXXXXXXsec; 4.) 1 msec; XXXXXXXXXXmsec; XXXXXXXXXXmsec; 7.) 1 ?sec; XXXXXXXXXX ?sec; XXXXXXXXXX ?sec; XXXXXXXXXXnsec; XXXXXXXXXXGHz; XXXXXXXXXXGHz; XXXXXXXXXXGHz; XXXXXXXXXXMHz; XXXXXXXXXXMHz; XXXXXXXXXXMHz; XXXXXXXXXXKHz; XXXXXXXXXXKHz; XXXXXXXXXXKHz; XXXXXXXXXXHz; 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?

Answered Same Day Dec 23, 2021

Solution

Robert answered on Dec 23 2021
123 Votes
ANSWERS
1. Multipath channels occur in both wireless and wired systems. A model of the multipath
channel is often critical for evaluating receiver designs. This article shows how a
complex-coefficient FIR filter can be used to model the channel. The multipath channel
is described by a main path of amplitude 1.0, plus one or more paths which each have a
unique delay, amplitude, and phase with respect to the main path. The channel may be
epresented by the following transfer function:
Let s(t) is the transmitted signal. The received signal can be written as a sum of
multipath a
ivals:
( ) ∑ ( )
Here, L is the total number of multipath a
ivals, ai and τi are the amplitude and a
ival
time of the ith ray, respectively.
Consider the transmitted signal s(t) = ejwt . Then, the received signal is
( ) ...
SOLUTION.PDF

Answer To This Question Is Available To Download

Related Questions & Answers

More Questions »

Submit New Assignment

Copy and Paste Your Assignment Here