Control System Principles Flashcards
7 cards from real BEE practice questions. Tap to flip, then mark Knew It or Still Learning — missed cards come back until you master them.
Read the first 7 Control System Principles flashcards as text
In a block diagram, the signal flow from the output back to the summing junction is called:
Answer: Feedback path
The feedback path carries the measured output (or processed output) back to the summing junction to be compared with the reference input.
For a unity-feedback system, the closed-loop transfer function T(s) = G(s)/[1+G(s)] has the sensitivity function S(s) equal to:
Answer: 1/[1+G(s)]
The sensitivity function S(s) = 1/[1+G(s)] quantifies how output changes in response to disturbances or plant perturbations.
Which statement about a minimum-phase system is correct?
Answer: All zeros are in the left-half plane
A minimum-phase system has all its zeros located in the left-half plane (open), giving the minimum possible phase lag for a given magnitude response.
State feedback control with full state feedback u = -Kx can place all closed-loop poles arbitrarily if and only if the system is:
Answer: Controllable
Arbitrary pole placement via state feedback is possible if and only if the system is completely controllable (the controllability matrix has full rank).
What is the bandwidth of a closed-loop system generally defined as?
Answer: The frequency at which the closed-loop magnitude drops to -3 dB below its DC value
Closed-loop bandwidth is defined as the frequency range over which the closed-loop magnitude stays within 3 dB of its low-frequency value.
In signal flow graphs, Mason's gain formula is used to find:
Answer: The overall transfer function from input to output
Mason's gain formula computes the overall transfer function by summing path gains weighted by cofactors of the signal flow graph determinant.
A PI controller introduces which of the following into the open-loop transfer function?
Answer: An additional pole at the origin and a zero in the LHP
A PI controller C(s) = Kp + Ki/s = (Kp·s + Ki)/s adds a pole at s=0 (integrator) and a zero at s = -Ki/Kp in the left-half plane.