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首页> 外文期刊>IEEE Transactions on Automatic Control >Robust H2/H∞-state estimation fordiscrete-time systems with error variance constraints
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Robust H2/H∞-state estimation fordiscrete-time systems with error variance constraints

机译:具有误差方差约束的离散系统的鲁棒H2 /H∞状态估计

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摘要

This paper studies the problem of an H∞-norm and variance-constrained state estimator design for uncertain linear discrete-time systems. The system under consideration is subjected to time-invariant norm-bounded parameter uncertainties in both the state and measurement matrices. The problem addressed is the design of a gain-scheduled linear state estimator such that, for all admissible measurable uncertainties, the variance of the estimation error of each state is not more than the individual prespecified value, and the transfer function from disturbances to error state outputs satisfies the prespecified H∞-norm upper bound constraint, simultaneously. The conditions for the existence of desired estimators are obtained in terms of matrix inequalities, and the explicit expression of these estimators is also derived. A numerical example is provided to demonstrate various aspects of theoretical results
机译:本文研究了不确定线性离散时间系统的H∞范数和方差约束状态估计器的设计问题。所考虑的系统在状态矩阵和测量矩阵中都受到时不变的范数界参数不确定性的影响。解决的问题是增益预定线性状态估计器的设计,使得对于所有可容许的不确定性,每个状态的估计误差的方差均不大于各个预先指定的值,以及从扰动到误差状态的传递函数输出同时满足预定的H∞-范数上限约束。根据矩阵不等式获得了存在所需估计量的条件,并且还导出了这些估计量的显式表达式。提供了一个数值示例来说明理论结果的各个方面

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