Q3. For the following difference equation, compute the z- transform of h[n], sketch the pole / zero pattern in the z-plane and the filter block diagram . what is the value of (B) for which the system is stable. y[n]=x[n]-x[n-1]+B y[n-1) Q4. For the z-plane pole/zero patterns shown in figure below, compute the z- transform , sketch the filter block diagram determine and sketch the impulse response sequence .let the filter gain=1. Im Įm Izl=1 Jzl=1 Re Re (a) (b)

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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Q3. For the following difference equation, compute the z- transform of h(n],
sketch the pole / zero pattern in the z-plane and the filter block diagram . what is
the value of (B) for which the system is stable. y[n]=x[n]-x[n-1]+B y[n-1]
Q4. For the z-plane pole/zero patterns shown in figure below, compute the z-
transform , sketch the filter block diagram determine and sketch the impulse
response sequence .let the filter gain=1.
Im
Im
Izl=1
Jzl=1
Re
Re
(a)
(b)
Transcribed Image Text:1 Q3. For the following difference equation, compute the z- transform of h(n], sketch the pole / zero pattern in the z-plane and the filter block diagram . what is the value of (B) for which the system is stable. y[n]=x[n]-x[n-1]+B y[n-1] Q4. For the z-plane pole/zero patterns shown in figure below, compute the z- transform , sketch the filter block diagram determine and sketch the impulse response sequence .let the filter gain=1. Im Im Izl=1 Jzl=1 Re Re (a) (b)
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