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首页> 外文期刊>SIAM Journal on Control and Optimization >An analogue of Shannon information theory for detection and stabilization via noisy discrete communication channels
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An analogue of Shannon information theory for detection and stabilization via noisy discrete communication channels

机译:香农信息理论的类似物,用于通过嘈杂的离散通信通道进行检测和稳定

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摘要

The paper addresses both detection and stabilization problems involving communication errors and capacity constraints. Discrete-time partially observed linear systems are studied. Unlike the classic theory, the sensor signals are transmitted to the estimator/controller over a noisy digital communication link modeled as a stochastic stationary discrete memoryless channel. It is shown that for noise-free plants, the Shannon capacity of the channel constitutes the border separating the cases where stabilization and reliable detection (asymptotic state estimation) with arbitrarily large probability are and are not possible, respectively.
机译:该论文解决了涉及通信错误和容量限制的检测和稳定问题。研究了离散时间部分观测的线性系统。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嘈杂数字通信链路传输到估计器/控制器。结果表明,对于无噪声的工厂,通道的香农容量构成了分别以不可能和不可能的概率进行稳定和可靠检测(渐进状态估计)的边界。

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