D Question 1 Consider the closed-loop system With H(z) = 0.5(2-0.5)(2+1) (z+0.4)(z-1)³ K H (2) = 2 1 pts Generate a root

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D Question 1 Consider the closed-loop system With H(z) = 0.5(2-0.5)(2+1) (z+0.4)(z-1)³ K H (2) = 2 1 pts Generate a root

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D Question 1 Consider The Closed Loop System With H Z 0 5 2 0 5 2 1 Z 0 4 Z 1 K H 2 2 1 Pts Generate A Root 1
D Question 1 Consider The Closed Loop System With H Z 0 5 2 0 5 2 1 Z 0 4 Z 1 K H 2 2 1 Pts Generate A Root 1 (43.53 KiB) Viewed 44 times
D Question 1 Consider The Closed Loop System With H Z 0 5 2 0 5 2 1 Z 0 4 Z 1 K H 2 2 1 Pts Generate A Root 2
D Question 1 Consider The Closed Loop System With H Z 0 5 2 0 5 2 1 Z 0 4 Z 1 K H 2 2 1 Pts Generate A Root 2 (43.98 KiB) Viewed 44 times
D Question 1 Consider the closed-loop system With H(z) = 0.5(2-0.5)(2+1) (z+0.4)(z-1)³ K H (2) = 2 1 pts Generate a root locus using matlab, and determine the value of the gain K that will give poles on the imaginary axis.
Question 2 Consider the same closed-loop system as in the previous exercise: H(2) = 90 With 0.5(-0.5)(+1) (z+0.4)(z-1)³ K 1 pts H(z)= In the previous exercise you determined the value of the gain K that will give poles on the unit circle. A discrete-time system with complex-conjugated poles on the unit circle, at z = eth will have undamped oscillations given by the argument of the complex poles. If the sampling period is 0.2 seconds, what is the frequency of these undamped oscillations?
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