The simultaneous optimization problem for sensitivity and gain margin

The combined sensitivity and gain margin problem for single-input single-output linear systems is formulated and solved using a complex function interpolation technique. It is proved that this problem always has a real rational solution provided it is solvable in the complex irrational sense. The se...

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Published inIEEE transactions on automatic control Vol. 35; no. 5; pp. 558 - 563
Main Authors Yan, W., Anderson, B.D.O.
Format Journal Article
LanguageEnglish
Published New York, NY IEEE 01.05.1990
Institute of Electrical and Electronics Engineers
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ISSN0018-9286
DOI10.1109/9.53522

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Abstract The combined sensitivity and gain margin problem for single-input single-output linear systems is formulated and solved using a complex function interpolation technique. It is proved that this problem always has a real rational solution provided it is solvable in the complex irrational sense. The sensitivity minimization problem subject to a gain margin constraint and its dual problem are also considered. The range of the gain margin constraint is given subject to which the optimal constrained sensitivity is identical with the optimal unconstrained sensitivity. It is shown that, not unexpectedly, the gain margin maximization conflicts with the sensitivity minimization for a nonminimum phase plant.< >
AbstractList The combined sensitivity and gain margin problem for linear SISO systems is formulated and solved using a complex function interpolation technique. It is proved that this problem always has a real rational solution, provided that it is solvable in the complex irrational sense. The sensitivity minimization problem subject to a gain margin constraint and its dual problem are also considered. The range of the gain margin constraint is given, subject to which the optimal constrained sensitivity is identical with the optimal unconstrained sensitivity. It is shown that, not unexpectedly, the gain margin maximization conflicts with the sensitivity minimization for a nonminimum-phase plant. (I.E.)
The combined sensitivity and gain margin problem for single-input single-output linear systems is formulated and solved using a complex function interpolation technique. It is proved that this problem always has a real rational solution provided it is solvable in the complex irrational sense. The sensitivity minimization problem subject to a gain margin constraint and its dual problem are also considered. The range of the gain margin constraint is given subject to which the optimal constrained sensitivity is identical with the optimal unconstrained sensitivity. It is shown that, not unexpectedly, the gain margin maximization conflicts with the sensitivity minimization for a nonminimum phase plant.< >
The combined sensitivity and gain margin problem for single-input single-output linear systems is formulated and solved using a complex function interpolation technique. It is proved that this problem always has a real rational solution provided it is solvable in the complex irrational sense. The sensitivity minimization problem subject to a gain margin constraint and its dual problem are also considered. The range of the gain margin constraint is given subject to which the optimal constrained sensitivity is identical with the optimal unconstrained sensitivity. It is shown that, not unexpectedly, the gain margin maximization conflicts with the sensitivity minimization for a nonminimum phase plant
Author Anderson, B.D.O.
Yan, W.
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Cites_doi 10.1109/TAC.1983.1103275
10.1109/TAC.1984.1103357
10.1109/TAC.1987.1104504
10.1016/0005-1098(74)90021-1
10.1109/TAC.1985.1103805
10.1007/BFb0093318
10.1109/TAC.1985.1104004
10.1109/TAC.1981.1102555
10.1080/00207178008922838
10.1109/TAC.1981.1102603
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Issue 5
Keywords Linear system
Feedback system
Compensator
Control synthesis
Robustness
SISO system
Simultaneity
Non minimum phase system
Optimization
Constrained optimization
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walsh (ref13) 1965; 20
kober (ref11) 1952
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  doi: 10.1109/TAC.1981.1102603
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Snippet The combined sensitivity and gain margin problem for single-input single-output linear systems is formulated and solved using a complex function interpolation...
The combined sensitivity and gain margin problem for linear SISO systems is formulated and solved using a complex function interpolation technique. It is...
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SubjectTerms Applied sciences
Computer science; control theory; systems
Control systems
Control theory. Systems
Exact sciences and technology
Feedback
Gain measurement
Interpolation
Linear systems
Optimal control
Particle measurements
Robust control
Robustness
Systems engineering and theory
Title The simultaneous optimization problem for sensitivity and gain margin
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