Explain why integral action requires anti-windup

Assignment Help Other Engineering
Reference no: EM131298892

Closed loop requirements and analysis of the plant

Question 1.1. Using the formula from your notes, calculate the minimum damping ratio of the dominant poles for an overshoot of os ≤ 10%.

Question 1.2. Using the formula from your notes, calculate the minimum damped frequency, ωd, of the dominant poles for a peak time tp ≤ 0.5 sec.

Question 1.3. Sketch the area in the s-plane where the dominant poles must lie in order to meet both the specifications.

Question 1.4. Record the values of kg , T1 and T2.

Question 1.5. Record the transfer function and comment on it. Record and comment on the plant poles.

Include the print-out of the s-plane plot and explain it.

Question 1.6. Predict the characteristics of the open loop step response. Explain why.

Question 1.7. Include the print-out of this response. Explain its characteristics.

Proportional controller design by root-locus

Question 2.1. Include the print-out of the root locus. Explain its characteristics.

Question 2.2. From the root locus plot, determine whether both design specifications are simultaneously possible using proportional feedback alone. Show the area where the dominant poles must lie in order to meet both the specifications on the root locus plot. Record the value of kp at the minimum required value of ωd. Record the poles for this value of kp. Determine ζ and the predicted overshoot.

Question 2.3. Record and comment on the closed loop transfer function. Record the closed loop damping
ratio, natural frequency and poles and compare these to the values predicted from the root locus. Include the print-out of the step response. Record os and tp. Comment on the response. Does your design meet the specifications? Compare the overshoot and peak time to the values predicted from the root locus.

Question 2.4. Use the mouse on the root locus screen plot to determine the limiting value of kp for system stability. Calculate the value by hand using the Routh-Hurwitz criterion. Show your workings.

Frequency domain analysis

Question 3.1. Include a print-out of the Bode plot. Explain its main characteristics. Confirm that the gain margin is equal to the limiting value of gain for closed loop stability obtained in the previous section.

Question 3.2. Include a print-out of the Bode plot of the open-loop compensated system. Show the gain and phase margins on the plot. Comment on the plot.

Question 3.3. State the Nyquist criterion for this system.

Question 3.4. Include a print-out of the Nyquist plot (including the gain and phase margins) of the open- loop compensated system. Explain its main characteristics.

Question 3.5. Include a print-out of the Nichols chart of the open-loop compensated system kptt(s). Show the gain and phase margins on the plot. Show on the plot the maximum closed loop gain, Mr, resonant phase lag, φr , and maximum phase lag. Record the frequencies that these occur. Also show the closed loop bandwidth, ωb.

Question 3.6. Include a print-out of the closed loop frequency response. Record Mr, φr , ωr , ωb and maximum phase lag and its frequency. Compare these values to those predicted by the Nichols chart.

Question 3.7. Include a print-out of the closed loop system sensitivity frequency magnitude response.

Comment on the response and its significance. Record the maximum gain of the sensitivity function, MS . Compare this value to that predicted by the Nyquist plot.

PID/P+D controller design

Question 4.1. What will be the system type number a if PID controller is used on this plant? For zero steady state error (to unity step references) for this plant, is an integrator required in the controller? If there is a steady disturbance at the plant input, is integral action required in the controller for zero steady state error? Show why.

Question 4.2. Explain why integral action requires anti-windup. What are the other disadvantages of including integral action in the controller?

Question 4.3. Include the print-out of the step response of your final design. From the plot, measure os and tp. Does your design meet the specifications? Record the final values of kp and kd. Record the transfer function K(s), the system open loop transfer function L(s) and the closed loop transfer function T (s).

Question 4.4. Include the print-out of the Bode plot. Draw its asymptotes and explain its characteristics.

Question 4.5. Record the gain margin, phase margin, and associated frequencies. Compare these to the values obtained in the previous section. Include the print-out of the Bode plot and show the gain margin and phase margin on the Bode plot.

Question 4.6. Include the print-out of the s-plane plot. Record and comment on the closed loop poles and zeros.

Pole placement using state feedback

Question 5.1. Record the state space representation produced by MATLAB.

Question 5.2. Record the transformed state space representation and the transformation/observability matrix S. From G(s), calculate the state space representation by hand, and compare the results to those given by MATLAB.

Question 5.3. Record and explain how you calculated the desired pole positions.

Question 5.4. Record the values of K. Calculate the state feedback controller gain matrix, K, by hand
using the method in your notes and verify the MATLAB result.

Question 5.5. Include the print-out the closed loop step response. From the plot, measure os and tp . Does your design meet the specifications? If not, explain why.

Question 5.6. Briefly give the main disadvantages of state feedback.

Question 5.7. Suggest how the reference tracking of the closed loop system may be improved.

Reference no: EM131298892

Questions Cloud

What is the effective annual rate : What is the effective annual rate (EAR or EFF%) for a nominal rate of 12%, compounded semiannually? Compounded quarterly? Compounded monthly? Compounded daily
Of the of the key players you identified : Of the of the key players you identified, pick two (2) - One for the recommendation and one against recommendation. Describe the political influence of each, explaining motives, conflicts, interrelationships, and impacts on the policy.
What is the velocity of money : 1. What is the "velocity of money"? Why is it important to the macro-economy? 2. Why would some households with increases in "household wealth" continue to consume at their prior household level even given household wealth increases? How would..
Estimate the value using the linear model : Estimate this value using the linear model. How do they compare? Repeat for G = 50 and G = 100. What do you conclude?
Explain why integral action requires anti-windup : Assignment CS2 - Control Systems Design and Analysis - What will be the system type number a if PID controller is used on this plant? For zero steady state error (to unity step references) for this plant, is an integrator required in the controller..
What are the risks of a bidding process : 1. What are the risks of a bidding process like the one described in this case? 2. Why would elected representatives side with the manufacturers and retailers on this issue?
Examine impact of the pole offset by executing the program : Examine the impact of the pole offset by executing the program assuming a perfect loop (λ = 0).- How many cycles are slipped by the perfect loop? By how much is the lock time reduced?
Calculate the expected value of the low risk project : Calculate the expected value of the high and low risk project to MarCher Industries' stockholders if the firm remains unlevered. Predict which project the stockholders prefer. Justify your prediction
How does game theory explain strategic behavior : How can economists explain irrational behavior?

Reviews

Write a Review

Other Engineering Questions & Answers

  Describe the basis for a step response

Q1: A first order system was assessed using a step response method and was found to have a time constant of 1.5s. a) Describe the basis for a step response

  Problems baseed on a national and global perspective

How did this make you feel? If no personal situation with a supervisor, then give an example of an observation you have made.

  How many nmos transistors are needed in the nor decoder

For the column decoder shown in Fig. 16.26, how many column-address bits are needed in a 1-Mbit-square array? How many NMOS pass transistors are needed in the multiplexer? How many NMOS transistors are needed in the NOR decoder? How many PMOS tran..

  What type of loading arrangements found on a roadheader

Design a suitable ore pass to transport ore a vertical distance of 200m from  the extraction level to the transport level of a block caving mining operation.

  Amount of heat loss from the apple

An apple loses 4.5 kJ of heat as it cools per °C drop in its temperature. The amount of heat loss from the apple per °F drop in its temperature is

  What is the back pressure pr

The supersonic nozzle of Fig is over expanded (case G of Fig) with Ae/At = 3.0 and a stagnation pressure of 350 kPa. If the jet edge makes a 4° angle with the nozzle centerline, what is the back pressure pr in kPa?

  Symmetrical power system

Symmetrical Power system - modify the steps of solution without affecting the results

  What is the average delay per vehicle

Each booth processes trucks at a uniform rate of 2 per minute. What is the average delay per vehicle, the maximum queue length, and the average queue length?

  What is the uniform deterministic arrival rate

what is the uniform deterministic arrival rate if the vehicle queue is cleared 35 minutes after vehicles begin to arrive?

  Estimate the optimum detection threshold

Estimate optimum detection threshold VT for the above system, if the polar signals are equally likely. Rate system performance by computing the bit error rate corresponding to the optimum detection threshold VT obtained.

  How to arrange the office hours for emgt

How to arrange the office hours for EMGT 365 for the next semester. He will have two teaching assistants (TAs). He is considering two options

  Design at least four broadcast protocols for a cube system

Design at least four broadcast protocols for a cube system with 8 nodes using message-passing, shared-memory and mobile agent communication models

Free Assignment Quote

Assured A++ Grade

Get guaranteed satisfaction & time on delivery in every assignment order you paid with us! We ensure premium quality solution document along with free turntin report!

All rights reserved! Copyrights ©2019-2020 ExpertsMind IT Educational Pvt Ltd