首页> 外文会议>IEEE International Conference on Robotics, Intelligent Systems and Signal Processing vol.2; 20031008-13; Changsha, Hunan(CN) >Robust H_∞ Filter Design for the Delta Operator Formulated Systems with Parameter Uncertainty
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Robust H_∞ Filter Design for the Delta Operator Formulated Systems with Parameter Uncertainty

机译:参数不确定的Delta算子公式化系统的鲁棒H_∞滤波器设计

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This paper is concerned with the problem of robust H_∞ filtering for the delta operator formulated discrete-time systems with norm-bound parameter uncertainties in both the state and output matrices. The purpose of this problem addressed is to design a linear filter such that the filtering process is asymptotically stable and the transfer function from the exogenous noise inputs to the error state outputs meets a given H_∞ norm upper bound constraint for all admissible uncertainties. A sufficient condition for the existence of such a filter is obtained in terms of algebraic matrix inequality approach, and the explicit expression of the desired filter is also derived. The main results are then extended to robust H_∞ filter design for delta operator formulated state-delayed systems.
机译:本文关注的是在状态矩阵和输出矩阵中均具有范数界参数不确定性的增量算子制定的离散时间系统的鲁棒H_∞滤波问题。解决此问题的目的是设计一种线性滤波器,使得滤波过程渐近稳定,并且对于所有可允许的不确定性,从外源噪声输入到误差状态输出的传递函数都满足给定的H_∞范数上限约束。根据代数矩阵不等式方法获得了存在这种滤波器的充分条件,并且还导出了所需滤波器的显式表达式。然后将主要结果扩展到针对增量算子制定的状态延迟系统的鲁棒H_∞滤波器设计。

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