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Shannon zero error capacity in the problems of state estimation and stabilization via noisy communication channels

机译:通过噪声通信信道进行状态估计和稳定问题的香农零误差能力

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The paper addresses state estimation and stabilization problems involving communication errors and capacity constraints. Discrete-time partially observed unstable linear systems perturbed by stochastic exogenous disturbances are studied. Unlike the classic theory, the sensor signals are transmitted to the estimator or controller over a noisy digital communication link modelled as a stochastic stationary discrete memoryless channel. It is shown that the capability of the noisy channel to ensure almost sure stabilizability/observability of the plant is identical to exactly its capability to transmit information with zero probability of error. Specifically, it is demonstrated that the standard numerical characteristic of the latter capability, i.e., the Shannon zero error capacity of the channel, constitutes the border separating the cases where the plant is and respectively, is not stabilizable/observable with probability 1.
机译:本文解决了涉及通信错误和容量限制的状态估计和稳定性问题。研究了随机外源干扰扰动的离散时间部分观测的不稳定线性系统。与经典理论不同,传感器信号通过建模为随机固定离散无记忆通道的噪声数字通信链路传输到估算器或控制器。结果表明,有噪声通道确保几乎确定的工厂稳定性/可观察性的能力与其具有零错误概率的信息传输能力完全相同。具体地,证明了后一种能力的标准数值特性,即通道的香农零误差能力,构成了以概率1不能稳定/可观察到植物的情况的边界。

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