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A student, Mitch, who is studying process control argues that an open - loop unstable process can be 1 stablised with a feedback controller. Morrie,

A student, Mitch, who is studying process control argues that an open-loop unstable process can be 1
stablised with a feedback controller. Morrie, who is Mitch's research supervisor, instructs Mitch to
analyse the closed-loop system to prove that he is right. Mitch considers the transfer function:
-kc1-rs-kc,Gp=K1-s
where >0 and KinR. The closed-loop system is shown in Fig. 3 where Gc is the controller.
(iv) With Gc=Kc, what is the effect of increasing Ke on the offset of the closed-loop system? Will
overshoot and/or oscillation ever occur with increasing Kc?
(v) Consider a scenario where a proportional-integral controller Gc=2(1+11s) is used. Discuss
qualitatively the effect of I on the closed-loop system.
(6 marks)
(vi) Consider the scenario where a proportional-integral controller Ge=(1+1is) is used. What is the
general trend of the closed-loop system? How does varying I affect the trend?
(10 marks)
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