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Robust /spl Hscr//sub /spl infin// filtering for continuous time varying uncertain systems with deterministic input signals

机译:鲁棒的/ spl Hscr // sub / spl infin //具有确定性输入信号的连续时变不确定系统的滤波

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摘要

Many dynamical systems involve not only process and measurement noise signals but also parameter uncertainty and known input signals. When /spl Lscr//sub 2/ or /spl Hscr//sub /spl infin// filters that were designed based on a "nominal" model of the system are applied, the presence of parameter uncertainty will not only affect the noise attenuation property of the filter but also introduce a bias proportional to the known input signal, and the latter may be very appreciable. We introduce a finite-horizon robust /spl Hscr//sub /spl infin// filtering method that provides a guaranteed /spl Hscr//sub /spl infin// bound for the estimation error in the presence of both parameter uncertainty and a known input signal. This method is developed by using a game-theoretic approach, and the results generalize those obtained for cases without parameter uncertainty or without a known input signal. It is also demonstrated, via an example, that the proposed method provides significantly improved signal estimates.
机译:许多动力学系统不仅涉及过程和测量噪声信号,而且还涉及参数不确定性和已知的输入信号。当应用基于系统“标称”模型设计的/ spl Lscr // sub 2 /或/ spl Hscr // sub / spl infin //滤波器时,参数不确定性的存在不仅会影响噪声衰减滤波器的特性,但也会引入与已知输入信号成比例的偏置,后者可能非常明显。我们介绍了一种有限水平的鲁棒性/ spl Hscr // sub / spl infin //过滤方法,该方法在参数不确定和已知情况下均能为估计误差提供有保证的/ spl Hscr // sub / spl infin //输入信号。该方法是通过使用博弈论方法开发的,其结果概括了在没有参数不确定性或已知输入信号的情况下获得的结果。通过示例还证明了所提出的方法提供了明显改善的信号估计。

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