Lecture 5 Flashcards

1
Q

What is a unity feedback system?

A

A system with a feedback term with a transfer function of 1

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2
Q

What happens as controller gain increases?

A

The response gets closer to the desired value and the

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3
Q

What is the steady state error?

A

The difference between ‘what we asked for’ and ‘what we got’

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4
Q

Do 1st and 2nd order responses exhibit a steady state error?

A

1st: yes
2nd: no

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5
Q

Why is integral control used?

A

The controller provides better performance if the system were second order, which is achieved by integral control

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6
Q

What is the equation for proportional control in the t and s domains?

A

t: Kpe(t)
s: Kp
E(s)

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7
Q

What is the equation for integral control in the t and s domains?

A

t: Ki * Int e(t)dt
s: Ki(1/s)E(s)

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8
Q

What is the transfer function for when K is replaced by a combination of integral and proportional control?

A

Kp + Ki/s

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9
Q

What is the final value theorem?

A

lim f(t) = lim SF(s)
t -> infinity s -> 0

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10
Q

What happens when controller gain is increased

A

The response gets closer to the desired value of 1 and the response speed is faster, reduce steady state error but it will never become zero

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11
Q

How do we change a first order system to a second order system

A

Adding integral control;
Change controller gain from K to Kp + Ki * 1/s

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12
Q

In the Laplace domain what does multiplying and dividing by s do

A

If you multiply by s same as differentiating, if you divide by s same as integrating

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13
Q

What is the final value theorem

A

Way of exploring the steady state response of a system without taking inverse Laplace transform and setting t = infinity

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14
Q

How does the final value theorem work

A

Multiply the transfer function by s and then find the value when s tends towards zero

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