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Robust coding for a class of sources: Applications in control and reliable communication over limited capacity channels

机译:对一类信号源进行鲁棒编码:在有限容量通道上的控制和可靠通信中的应用

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This paper is concerned with the control of a class of dynamical systems over finite capacity communication channels. Necessary conditions for reliable data reconstruction and stability of a class of dynamical systems are derived. The methodology is information theoretic. It introduces the notion of entropy for a class of sources, which is defined as a maximization of the Shannon entropy over a class of sources. it also introduces the Shannon information transmission theorem for a class of sources, which states that channel capacity should be greater or equal to the mini-max rate distortion (maximization is over the class of sources) for reliable communication. When the class of sources is described by a relative entropy constraint between a class of source densities, and a given nominal source density, the explicit solution to the maximum entropy, is given, and its connection to Renyi entropy is illustrated. Furthermore, this solution is applied to a class of controlled dynamical systems to address necessary conditions for reliable data reconstruction and stability of such systems. Crown Copyright (C) 2008 Published by Elsevier B.V. All rights reserved.
机译:本文涉及有限容量通信信道上一类动力学系统的控制。得出了可靠的数据重构和一类动力学系统的稳定性的必要条件。方法论是信息论的。它引入了针对一类源的熵的概念,该概念被定义为对一类源的香农熵的最大化。它还介绍了针对一类信号源的Shannon信息传输定理,该定理指出,信道容量应大于或等于最小-最大速率失真(最大超过信号源类),以实现可靠的通信。当通过一类源密度和给定的标称源密度之间的相对熵约束来描述源类时,将给出对最大熵的显式解,并说明其与仁义熵的关系。此外,该解决方案被应用于一类受控动力系统,以解决必要的条件,以实现可靠的数据重建和此类系统的稳定性。 Crown版权所有(C)2008,Elsevier B.V.保留所有权利。

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