Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN: 9780133923605
Author: Robert L. Boylestad
Publisher: PEARSON
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- Q6: Choose the correct answer among the following: 1- For the ramp input, the steady state error of the control system (Type one) is: a) zero b) A/K c) infinite d) none of the them 2- After moving the pick-off point (as shown in the figure). The feedback transfer function will be equal to: R)- a) H₂G, /a)1 b) H₂/G₁ a) 1arrow_forwardConsider a non-unity feedback system shown in Figure 3. R(S) s² + 4s + 10 s²+s+2 1 s²+2s +1 Figure 3: A non-unity feedback system. Derive the closed-loop transfer function of the system. C(s)arrow_forward10- A unity feedback system has open-loop transfer function G(s)=2/ (S+4), the ratio of time constants of open-loop to closed loop response will be: a- 1:1 b-2:1 c- 3:2 d-2:3 11-First column elements of the Routh's tabulation are 3, 5,-0.75, 0.5,2. It means that there: a- is one root in the left half of s-plane b- are two roots in the left half of s-plane c- are two roots in the right half of s-plane d- is one root in the right half of s-plane 12-An effect of phase-lag compensation on system performance is that: a-for a given relative stability, the velocity error constant is increased b- for a given relative stability, the velocity error constant is decreased c- the bandwidth of the system is increased d- the time response is made faster 13-The phase lead compensation is used to: a- increase rise time and decrease overshoot b- decrease both rise time and overshoot c- increase both rise time and overshoot d-decrease rise time and increase overshoot 14-When phase-lag compensation is…arrow_forwardConsider a non-unity feedback system shown in Figure 3. R(S) s² + 4s + 10 s²+s+2 1 s²+2s +1 Figure 3: A non-unity feedback system. Derive the closed-loop transfer function of the system. C(s)arrow_forwardWhy is the no encirclement about(-1+jo)?arrow_forwardAn open loop system has a zero at -15 and poles at -3,-5 and -8. For a gain of 150, calculate the exact 0dB frequencyarrow_forwardA unity feedback system has an open loop transfer function G(s) = 2/(S-1) 1. Is the open loop system stable 2. Is the closed loop system stable 3. Using Nyquist criterion check the stability of the closed loop system Hint: to solve branch 3, you only need to consider G(s)arrow_forwardLinear Feedback Systemsarrow_forwardThank you for answering this question. Please you specify each step and formula you used as soon as possible. Good Luck! Thank You. Open loop transfer function of a second order unity feedback system is given by G(s). A controller, indicated by G-(s), is added to the system to build a closed loop control system. The transfer function of the closed loop system becomes: G.(s)G(s) Gcı (s) %3D 1+ G.(s)G(s) 1 and Gc (s) = k,+, what would be the steady state error of the a) In case G(s) = closed loop system in response for a unity step input when kp = 5 and k; = 0.2? b) When a ramp input is applied (r(t) = 0.1*t) with k, = 5 and k; = 0.2, determine the output error of the system. c) In order to have zero steady-state error when k; = a feedforward controller with L(s). %3D s2+s+1 and k, = 5 with unity step input, designarrow_forwardarrow_back_iosarrow_forward_ios
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