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

机译:通过通信信道控制的随机非线性系统的平稳性和遍历性

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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.
机译:本文涉及以下问题:考虑到在嘈杂的频道上控制的随机非线性系统,其中最大的频道是存在编码和控制策略,使得闭环系统是随机稳定的?考虑的随机稳定性观念是有同性的,遍历性或渐近性的平均值。我们没有限制状态空间要紧凑,例如考虑的系统可以由无限的噪音驱动。为大类系统和渠道获得了必要和充分的条件。获得了大类非线性系统和信息通道的BODE的积分公式的概括。

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