Stationarity and ergodicity of stochastic non-linear systems controlled over communication channels

S. Yüksel
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Abstract

This paper is concerned with the following problem: Given a stochastic non-linear system controlled over a noisy channel, what is the largest class of channels for which there exist coding and control policies so that the closed loop system is stochastically stable? Stochastic stability notions considered are stationarity, ergodicity or asymptotic mean stationarity. We do not restrict the state space to be compact, for example systems considered can be driven by unbounded noise. Necessary and sufficient conditions are obtained for a large class of systems and channels. A generalization of Bode's Integral Formula for a large class of non-linear systems and information channels is obtained.
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通信信道控制的随机非线性系统的平稳性和遍历性
本文研究以下问题:给定一个受噪声信道控制的随机非线性系统,存在使闭环系统随机稳定的编码和控制策略的最大信道类别是什么?考虑的随机稳定性概念是平稳性、遍历性或渐近平均平稳性。我们没有限制状态空间是紧致的,例如系统可以被无界噪声驱动。得到了一类系统和通道的充分必要条件。对一类非线性系统和信息通道的波德积分公式进行了推广。
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