Engineering
Engineering, 06.05.2021 22:20, lele142018

Find the associated open-loop transfer function H(s). (2) Determine the desired eigenvalues for a first-order system to with a time constant of 1 s, augmented by two additional real, negative eigenvalues (the first exactly 10 times the dominant eigenvalue, the third one less than the second). Plot the unit step response for this desired behavior and discuss your results. (3) Design a state feedback control law to achieve the eigenvalue placement of part (2). Compare open and closed-loop responses to a unit step input, assuming zero initial conditions. Normalize the closed-loop output level to match that of the open-loop system for easy comparison. Were your control law design goals met

answer
Answers: 1

Other questions on the subject: Engineering

image
Engineering, 04.07.2019 12:10, Ryantimes2
On a average work day more than work place firs are reorted
Answers: 1
image
Engineering, 04.07.2019 18:10, lowkeyqueenk
Apipe with an outside diameter of 15 cm is exposed to an ambient air and surrounding temperature of -20°c. the pipe has an outer surface temperature of 65°c and an emissivity of 0.85. if the rate of heat loss from the pipe surface is 0.95 kw per meter of length, the external convective heat transfer coefficient (h) is: (a) 12.5 w/m"k (b) 18.6 w/mk (c) 23.7 w/mk (d) 27.9 w/mk (e) 33.5 w/mk
Answers: 1
image
Engineering, 04.07.2019 18:10, oshawn108
Ahot wire operates at a temperature of 200°c while the air temperature is 20°c. the hot wire element is a tungsten wire of 5 um diameter and 2 mm in length. plot using excel current, heat transfer and heat generated by the wire for air velocity varying from 1-10 m/s in steps of lm/s? matlab the sensor voltage output, resistance, or assume nu 0.989 re033pr13 take air properties at tr (200°c20°c)/2 = 110°c properties of tungsten: c 0.13 kj/kg. k 3 p 19250 kg/m k (thermal conductivity) = 174 w/m. k
Answers: 2
image
Engineering, 04.07.2019 18:20, Doogsterr
For each of the following process: a) sketch the p-v diagram, b)sketch t-s diagram, c) sketch t-v diagram, d) sketch the boundary work on one of the diagrams (a, b or c) and e) sketch the reversible heat transfer on one of the diagrams (a, b or c): 1- isobaric process from compressed liquid to superheated vapor 2- isothermal process from compressed liquid to superheated vapor 3- isentropic process from compressed liquid to superheated vapor
Answers: 3
Do you know the correct answer?
Find the associated open-loop transfer function H(s). (2) Determine the desired eigenvalues for a fi...

Questions in other subjects: