Consider the following block diagram: Y(1) h(t) where X (t) is a WSS random process with zero mean and autocorrelation: Rx (T) = AT (7) and where h(t) = 8 (t – 0) 2011 21 p1070 21 D1070 $26 P1070
Consider the following block diagram: Y(1) h(t) where X (t) is a WSS random process with zero mean and autocorrelation: Rx (T) = AT (7) and where h(t) = 8 (t – 0) 2011 21 p1070 21 D1070 $26 P1070
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
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data:image/s3,"s3://crabby-images/6123f/6123f7b5496cd3fe52d8068dc48e22a2ce0088b2" alt="Consider the following block diagram:
X(1)
Y(t)
where X (t) is a WSS random process with zero mean and autocorrelation:
h(t)
045
Rx (T) = AT (T)
and where
h(t) = 8(t – 0)
is the impulse response of an LTI system.
045
Find the mean value E { Y (t)} of the process Y (t). knowing that = 0,8. T
Note: beware that the circular block is a multiplier. The output signal is the product of the two input signals.
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Transcribed Image Text:Consider the following block diagram:
X(1)
Y(t)
where X (t) is a WSS random process with zero mean and autocorrelation:
h(t)
045
Rx (T) = AT (T)
and where
h(t) = 8(t – 0)
is the impulse response of an LTI system.
045
Find the mean value E { Y (t)} of the process Y (t). knowing that = 0,8. T
Note: beware that the circular block is a multiplier. The output signal is the product of the two input signals.
121 10703202045
401070 262045
p1070
26203
t070 s262045
72045 01
1170 202045
08262045
120
P1070
1070
010
Upo
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