Q2 (B): Answer with True or False for with following: 1. The system shown in figure (2) is stable. Nyquist Diagram 1.5 1 0.5 W=0 -0.5 1.5 Real Axis Figure (2) 2. Nyquist stability criterion used to investigate only the absolute relative stabilities of linear closed-loop systems from a knowledge of their open-loop frequency response characteristics. 3. For positive phase shift, the output signal is ahead the input signal. 4. Pass band: the range of frequencies that can pass through a filter without being reduced. 5. Either gain margin or phase margin is positive, the system is stable. Imaginary Axis -0.5 -1 -1.5 0.5 w=0

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Q2 (B): Answer with True or False for with following:
1. The system shown in figure (2) is stable.
Nyquist Diagram
1.5
W=00
-0.5
1
1.5
2
Real Axis
Figure (2)
2. Nyquist stability criterion used to investigate only the absolute relative stabilities of
linear closed-loop systems from a knowledge of their open-loop frequency response
characteristics.
3. For positive phase shift, the output signal is ahead the input signal.
4. Pass band: the range of frequencies that can pass through a filter without being
reduced.
5. Either gain margin or phase margin is positive, the system is stable.
Imaginary Axis
1-
0.5
0
-0.5
-1
-1.5
0.5
w=0
Transcribed Image Text:Q2 (B): Answer with True or False for with following: 1. The system shown in figure (2) is stable. Nyquist Diagram 1.5 W=00 -0.5 1 1.5 2 Real Axis Figure (2) 2. Nyquist stability criterion used to investigate only the absolute relative stabilities of linear closed-loop systems from a knowledge of their open-loop frequency response characteristics. 3. For positive phase shift, the output signal is ahead the input signal. 4. Pass band: the range of frequencies that can pass through a filter without being reduced. 5. Either gain margin or phase margin is positive, the system is stable. Imaginary Axis 1- 0.5 0 -0.5 -1 -1.5 0.5 w=0
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