Engineering
Engineering, 20.03.2020 12:44, MileenaKitana

This could represent the dynamics of an Industrial Remote Inspection System, which is essentially a remote-controlled robot for high radiation fields. Our goal is to design a proper compensator C(s). (a) (7 points) Design a compensator C(s) such that the gain crossover frequency become ωg = 10 rad/sec, and a minimum phase margin of 35 degrees is achieved (Note: tan−1 (10) = 84.3 ◦ , and tan−1 (3.33) = 73.3 ◦ And don’t forget to account for, say, 5◦ additional margin so once you modify your compensator in the next part, you would still meet your minimum phase margin of 35◦ ). (b) (1 point) Find the velocity constant Kv for the compensated system you designed in Part (a). What would be the steady-state tracking error of the closed-loop system ess for a ramp input r(t) = tu(t)? (c) (4 points) Now, modify your compensator in order to further reduce the steadystate ramp tracking error to less than 0.001 while still trying to preserve the same gain crossover frequency and the same phase margin as Part (a). (d) (2 points) How would you propose to modify your compensator in Part (a) if, instead of the 0.001 tracking error requirement in Part (c), your objective was actually to completely eliminate the steady-state error in tracking a ramp input?

answer
Answers: 3

Other questions on the subject: Engineering

image
Engineering, 04.07.2019 18:10, johnthienann58
Thermal stresses are developed in a metal when its a) initial temperature is changed b) final temperature is changed c) density is changed d) thermal deformation is prevented e) expansion is prevented f) contraction is prevented
Answers: 2
image
Engineering, 04.07.2019 18:10, kevin72836
Consider a large isothermal enclosure that is maintained at a uniform temperature of 2000 k. calculate the emissive power of the radiation that emerges from a small aperture on the enclosure surface. what is the wavelength ? , below which 10% of the emission is concentrated? what is the wavelength ? 2 above which 10% of the emission is concentrated? determine the wavelength at which maximum spectral emissive power occurs. what is the irradiation incident on a small object placed inside the enclosure?
Answers: 2
image
Engineering, 04.07.2019 18:10, jojoangelique13
The flow rate of air through a through a pipe is 0.02 m5/s. a pitot static tube is placed in the flow. the radius of the pitot static tube is 1 mm. assuming the flow to be steady and the air to be at 300k, calculate the difference in total and static pressure if the diameter of the pipe is: (a) d 0.1 m d 0.05 m (c) d 0.01 m
Answers: 2
image
Engineering, 04.07.2019 18:20, myahlit84
Inadequate stores control is not an obstacle to effective work order system. (clo4) a)-true b)-false
Answers: 3
Do you know the correct answer?
This could represent the dynamics of an Industrial Remote Inspection System, which is essentially a...

Questions in other subjects:

Konu
Mathematics, 02.12.2021 18:10
Konu
Mathematics, 02.12.2021 18:10
Konu
Mathematics, 02.12.2021 18:10
Konu
Mathematics, 02.12.2021 18:10