NASA NTRS · 20070014003
Stochastic Stability of Sampled Data Systems with a Jump Linear Controller
Abstract
In this paper an equivalence between the stochastic stability of a sampled-data system and its associated discrete-time representation is established. The sampled-data system consists of a deterministic, linear, time-invariant, continuous-time plant and a stochastic, linear, time-invariant, discrete-time, jump linear controller. The jump linear controller models computer systems and communication networks that are subject to stochastic upsets or disruptions. This sampled-data model has been used in the analysis and design of fault-tolerant systems and computer-control systems with random communication delays without taking into account the inter-sample response. This paper shows that the known equivalence between the stability of a deterministic sampled-data system and the associated discrete-time representation holds even in a stochastic framework.
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Gonzalez, Oscar R., Herencia-Zapana, Heber, Gray, W. Steven. 2004-03-16. Stochastic Stability of Sampled Data Systems with a Jump Linear Controller. https://ntrs.nasa.gov/citations/20070014003
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