English

Anisotropic Norm Bounded Real Lemma for Linear Discrete Time Varying Systems

Systems and Control 2012-08-21 v1 Information Theory math.IT Optimization and Control

Abstract

We consider a finite horizon linear discrete time varying system whose input is a random noise with an imprecisely known probability law. The statistical uncertainty is described by a nonnegative parameter a which constrains the anisotropy of the noise as an entropy theoretic measure of deviation of the actual noise distribution from Gaussian white noise laws with scalar covariance matrices. The worst-case disturbance attenuation capabilities of the system with respect to the statistically uncertain random inputs are quantified by the a-anisotropic norm which is an appropriately constrained operator norm of the system. We establish an anisotropic norm bounded real lemma which provides a state-space criterion for the a-anisotropic norm of the system not to exceed a given threshold. The criterion is organized as an inequality on the determinants of matrices associated with a difference Riccati equation and extends the Bounded Real Lemma of the H-infinity-control theory. We also provide a necessary background on the anisotropy-based robust performance analysis.

Keywords

Cite

@article{arxiv.1208.4081,
  title  = {Anisotropic Norm Bounded Real Lemma for Linear Discrete Time Varying Systems},
  author = {Eugene A. Maximov and Alexander P. Kurdyukov and Igor G. Vladimirov},
  journal= {arXiv preprint arXiv:1208.4081},
  year   = {2012}
}

Comments

7 pages, 1 figure, published in the Proceedings of the 18th IFAC World Congress, 28 August - 2 September 2011, Milano, Italy, pp. 4701-4706

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