b) The z-transform of x[n]is X(z)= Z>5. Solve the z-transform of the (z+0.5) following using properties: y[n]=2"n x[n] c) Design a bandpass digital filter with band edges of 1 kHz and 3 kHz using the digital-to-digital frequency transformations technique of IIR filter with the digital z+1 Low Pass Filter H(z)= This filter has a cutoff frequency of 0.5 kHz z? - z+0.2 and operates at a sampling frequency of 10 kHz.

Power System Analysis and Design (MindTap Course List)
6th Edition
ISBN:9781305632134
Author:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Publisher:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Chapter6: Power Flows
Section: Chapter Questions
Problem 6.16P
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(b) The z-transform of x[n]is X(z)=
4z
z> 5. Solve the z-transform of the
(z+0.5)
following using properties:
y[n] = 2"n x[n]
(c) Design a bandpass digital filter with band edges of 1 kHz and 3 kHz using the
digital-to-digital frequency transformations technique of IIR filter with the digital
z+1
Low Pass Filter H(z)=
This filter has a cutoff frequency of 0.5 kHz
z-z+0.2
and operates at a sampling frequency of 10 kHz.
Transcribed Image Text:(b) The z-transform of x[n]is X(z)= 4z z> 5. Solve the z-transform of the (z+0.5) following using properties: y[n] = 2"n x[n] (c) Design a bandpass digital filter with band edges of 1 kHz and 3 kHz using the digital-to-digital frequency transformations technique of IIR filter with the digital z+1 Low Pass Filter H(z)= This filter has a cutoff frequency of 0.5 kHz z-z+0.2 and operates at a sampling frequency of 10 kHz.
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