Frequency-Limited H-infinity Model Reduction for Positive Systems
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Authors
Li, Xianwei
Yu, Changbin (Brad)
Gao, Huijun
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Institute of Electrical and Electronics Engineers (IEEE Inc)
Abstract
In this paper, the problem of frequency-limited H∞
model reduction for positive linear time-invariant systems is investigated.
Specifically, our goal is to find a stable positive reducedorder
model for a given positive system such that theH∞ norm of
the error system is bounded over a frequency interval of interest.
A new condition in terms of matrix inequality is developed for
characterizing the frequency-limited H∞ performance. Then an
equivalent parametrization of a positive reduced-order model is
derived, based on which, an iterative algorithm is constructed for
optimizing the reduced-order model. The algorithm utilizes coarse
reduced-order models resulting from (generalized) balanced truncation
as the initial value. Both continuous- and discrete-time systems
are considered in the same framework. Numerical examples
clearly show the effectiveness and advantages of the proposed
model reduction method.
Index Terms—Frequency-limited H∞ performance, iterative
algorithm, model reduction, positive systems.
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IEEE Transactions on Automatic Control
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Restricted until
2037-12-31
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