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Probability-guaranteed H∞ finite-horizon filtering for a class of nonlinear time-varying systems with sensor saturations

机译:一类具有传感器饱和的非线性时变系统的概率保证H∞有限水平滤波

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摘要

In this paper, the probability-guaranteed H∞ finite-horizon filtering problem is investigated for a class of nonlinear time-varying systems with uncertain parameters and sensor saturations. The system matrices are functions of mutually independent stochastic variables that obey uniform distributions over known finite ranges. Attention is focused on the construction of a time-varying filter such that the prescribed H∞ performance requirement can be guaranteed with probability constraint. By using the difference linear matrix inequalities (DLMIs) approach, sufficient conditions are established to guarantee the desired performance of the designed finite-horizon filter. The time-varying filter gains can be obtained in terms of the feasible solutions of a set of DLMIs that can be recursively solved by using the semi-definite programming method. A computational algorithm is specifically developed for the addressed probability-guaranteed H∞ finite-horizon filtering problem. Finally, a simulation example is given to illustrate the effectiveness of the proposed filtering scheme.
机译:针对一类具有不确定参数和传感器饱和度的非线性时变系统,研究了概率保证的H∞有限水平滤波问题。系统矩阵是相互独立的随机变量的函数,它们服从已知有限范围内的均匀分布。注意力集中在时变滤波器的构造上,从而可以在概率约束下保证规定的H∞性能要求。通过使用差分线性矩阵不等式(DLMI)方法,可以建立足够的条件来保证所设计的有限水平滤波器的性能。时变滤波器增益可以根据一组DLMI的可行解获得,这些解可以通过使用半确定编程方法来递归求解。针对所解决的概率保证的H∞有限水平滤波问题,专门开发了一种计算算法。最后,给出了一个仿真实例来说明所提出的滤波方案的有效性。

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