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==Question from [[ECE_PhD_QE_CNSIP_Jan_2001_Problem1|ECE QE January 2001]]==  
 
==Question from [[ECE_PhD_QE_CNSIP_Jan_2001_Problem1|ECE QE January 2001]]==  
Question here
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Let <math class="inline">\mathbf{X}_{t}</math>  be a band-limited white noise strictly stationary random process with bandwidth 10 KHz. It is also known that <math class="inline">\mathbf{X}_{t}</math>  is uniformly distributed between <math class="inline">\pm5</math>  volts. Find:
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'''(a) (10 pts)'''
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Let <math class="inline">\mathbf{Y}_{t}=\left(\mathbf{X}_{t}\right)^{2}</math> . Find the mean square value of <math class="inline">\mathbf{Y}_{t}</math> .
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'''(b) (10 pts)'''
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Let <math class="inline">\mathbf{X}_{t}</math>  be the input to a linear shift-invariant system with transfer function:
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<br>
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<math class="inline">H\left(f\right)=\begin{cases}
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\begin{array}{lll}
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1    \text{      for }\left|f\right|\leq5\text{ KHz}\\
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0.5    \text{  for }5\text{ KHz}\leq\left|f\right|\leq50\text{ KHz}\\
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0    \text{      elsewhere. }
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\end{array}\end{cases}</math>
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<br>
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Find the mean and variance of the output.
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==Share and discuss your solutions below.==
 
==Share and discuss your solutions below.==
 
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=Solution 1 (retrived from [[ECE600_QE_2000_August|here]])=
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=Solution 1 =
 
Write it here
 
Write it here
 
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Revision as of 05:53, 17 July 2012


Question from ECE QE January 2001

Let $ \mathbf{X}_{t} $ be a band-limited white noise strictly stationary random process with bandwidth 10 KHz. It is also known that $ \mathbf{X}_{t} $ is uniformly distributed between $ \pm5 $ volts. Find:

(a) (10 pts)

Let $ \mathbf{Y}_{t}=\left(\mathbf{X}_{t}\right)^{2} $ . Find the mean square value of $ \mathbf{Y}_{t} $ .

(b) (10 pts)

Let $ \mathbf{X}_{t} $ be the input to a linear shift-invariant system with transfer function:
$ H\left(f\right)=\begin{cases} \begin{array}{lll} 1 \text{ for }\left|f\right|\leq5\text{ KHz}\\ 0.5 \text{ for }5\text{ KHz}\leq\left|f\right|\leq50\text{ KHz}\\ 0 \text{ elsewhere. } \end{array}\end{cases} $

Find the mean and variance of the output.


Share and discuss your solutions below.


Solution 1

Write it here


Solution 2

Write it here.


Back to QE CS question 1, January 2001

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Ph.D. on Applied Mathematics in Aug 2007. Involved on applications of image super-resolution to electron microscopy

Francisco Blanco-Silva