The model of a discrete time system is characterized by the transfer function: 22 +2 +1 G(2) Study the stability of the system using the Jury's test. • Study the stability of the system using the Routh-Hurwitz criterion after mapping the poles to the s-domain. Without computing the poles, deduce the number of poles that are inside and outside the unit circle.

Introductory Circuit Analysis (13th Edition)
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The model of a discrete time system is characterized by the transfer function:
22 + 늘2+1
24 – 423 + 22 – +
Study the stability of the system using the Jury's test.
• Study the stability of the system using the Routh-Hurwitz criterion after mapping the poles
to the s-domain. Without computing the poles, deduce the number of poles that are inside
and outside the unit circle.
Transcribed Image Text:The model of a discrete time system is characterized by the transfer function: 22 + 늘2+1 24 – 423 + 22 – + Study the stability of the system using the Jury's test. • Study the stability of the system using the Routh-Hurwitz criterion after mapping the poles to the s-domain. Without computing the poles, deduce the number of poles that are inside and outside the unit circle.
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