Consider the discrete filter F of impulse response given by: h We call Ck the input of the filter and Yk the associated output. /1. Compute the transfer function H(:) of this filter 人い) m input yon, out The output of filter F, the signal Yk is given as an input to filter F of transfer function given by: Hi (:) = 1/(1 - 42) The associated output is called S. V 2. Give the existing relationship between the Z transforms E(:) and S(2) of signals ek and Sk O3. Compute the impulse response of the equivalent filter that transforms signal ek into signal Sk k

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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Exercise 2.
Consider the discrete filter F of impulse response given by: hi (1/2)*, vo <ks
We call Ck the input of the filter and Yk the associated output.
/1. Compute the transfer function H(2) of this filter
人n) n
- input
you, out
put
The output of filter F, the signal Yk is given as an input to filter F of transfer function
given by: H(=) = 1/(1 - 42). The associated output is called Sk.
V 2. Give the existing relationship between the Z transforms E(2) and S(2) of signals
ek and Sk
O3. Compute the impulse response of the equivalent filter that transforms signal Ck
into signal Sk
k
Transcribed Image Text:Exercise 2. Consider the discrete filter F of impulse response given by: hi (1/2)*, vo <ks We call Ck the input of the filter and Yk the associated output. /1. Compute the transfer function H(2) of this filter 人n) n - input you, out put The output of filter F, the signal Yk is given as an input to filter F of transfer function given by: H(=) = 1/(1 - 42). The associated output is called Sk. V 2. Give the existing relationship between the Z transforms E(2) and S(2) of signals ek and Sk O3. Compute the impulse response of the equivalent filter that transforms signal Ck into signal Sk k
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