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Variance-Constrained Robust Estimation for Discrete-Time Systems with Communication Constraints

机译:具有通信约束的离散时间系统的方差约束鲁棒估计

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摘要

This paper is concerned with a new filtering problem in networked control systems (NCSs) subject to limited communication capacity, which includes measurement quantization, random transmission delay, and packets loss. The measurements are first quantized via a logarithmic quantizer and then transmitted through a digital communication network with random delay and packet loss. The three communication constraints phenomena which can be seen as a class of uncertainties are formulated by a stochastic parameter uncertainty system. The purpose of the paper is to design a linear filter such that, for all the communication constraints, the error state of the filtering process is mean square bounded and the steady-state variance of the estimation error for each state is not more than the individual prescribed upper bound. It is shown that the desired filtering can effectively be solved if there are positive definite solutions to a couple of algebraic Riccati-like inequalities or linear matrix inequalities. Finally, an illustrative numerical example is presented to demonstrate the effectiveness and flexibility of the proposed design approach.
机译:本文涉及网络控制系统(NCSS)的新过滤问题,其受通信容量有限,其包括测量量化,随机传输延迟和分组丢失。首先通过对数量化器量化测量,然后通过随机延迟和分组丢失通过数字通信网络传输。可以被视为一类不确定性的三种通信约束现象通过随机参数不确定性系统制定。纸张的目的是设计线性滤波器,使得对于所有通信约束,过滤过程的误差状态是均方界限,每个状态的估计误差的稳态方差不大于个体规定的上限。结果表明,如果存在对几个代数Riccati的不等式或线性矩阵不等式存在正定的溶液,则可以有效地解决所需的滤波。最后,提出了说明性的数值例子以证明所提出的设计方法的有效性和灵活性。

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