Given the unity feedback system of Figure P8.3, make an accurate plot of the root locus for the following: K(s - 2s + 2) (s + 1)(s+2) K(s – 1)(s – 2) (s + 1)(s + 2) a. G(s) b. G(s) = Calibrate the gain for at least four points for each case. Also find the breakaway points, the jw-axis crossing, and the range of gain for stability for each case. Find the angles of arrival for Part a. [Section: 8.5]
Given the unity feedback system of Figure P8.3, make an accurate plot of the root locus for the following: K(s - 2s + 2) (s + 1)(s+2) K(s – 1)(s – 2) (s + 1)(s + 2) a. G(s) b. G(s) = Calibrate the gain for at least four points for each case. Also find the breakaway points, the jw-axis crossing, and the range of gain for stability for each case. Find the angles of arrival for Part a. [Section: 8.5]
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
Problem 1P: Visit your local library (at school or home) and describe the extent to which it provides literature...
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![Given the unity feedback system of Figure P8.3,
make an accurate plot of the root locus for the
following:
K(s² – 2s +2)
(s + 1)(s + 2)
a. G(s) =
K(s – 1)(s – 2)
(s+ 1)(s+2)
b. G(s) =
Calibrate the gain for at least four points for each case.
Also find the breakaway points, the jw-axis crossing,
and the range of gain for stability for each case. Find the
angles of arrival for Part a. [Section: 8.5]](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F9cb7987e-8a97-400c-a8dd-40c41f78b4f2%2F66dff9c2-7486-44ed-8513-f6695ab4eb74%2Fzt3wh03_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Given the unity feedback system of Figure P8.3,
make an accurate plot of the root locus for the
following:
K(s² – 2s +2)
(s + 1)(s + 2)
a. G(s) =
K(s – 1)(s – 2)
(s+ 1)(s+2)
b. G(s) =
Calibrate the gain for at least four points for each case.
Also find the breakaway points, the jw-axis crossing,
and the range of gain for stability for each case. Find the
angles of arrival for Part a. [Section: 8.5]
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