Decentralised H∞-filtering of networked control systems: A jump system approach

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Abstract

We consider the problem of decentralised estimation of discrete-time interconnected systems with local estimators communicating with their subsystems over lossy communication channels. Assuming that the packet losses follow the Gilbert-Elliot model, the networked estimation problem can be formulated into a Markovian jump linear system framework. Modelling subsystem interactions as sum quadratic constrained uncertainties, we design mode-dependent decentralised -estimators that robustly stabilise the estimator system and guarantee a given disturbance attenuation level. The estimation gains are derived with necessary and sufficient rank-constrained linear matrix inequality conditions. Results are also provided for local mode-dependent estimators. Estimator synthesis is done using a cone-complementarity linearisation algorithm for the rank-constraints. The results are illustrated via an example. © 2013 Taylor & Francis.

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Al-Radhawi, M. A., & Bettayeb, M. (2014). Decentralised H∞-filtering of networked control systems: A jump system approach. International Journal of Systems Science, 45(10), 2182–2195. https://doi.org/10.1080/00207721.2013.763304

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