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Moving-horizon Guaranteed Parameter Estimation

机译:视距保证参数估计

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This paper is concerned with guaranteed parameter estimation of non-linear dynamic systems in a context of bounded measurement error. The problem consists of approximating the set of all possible parameter values such that the predicted values of plant outputs match their corresponding measurements within prescribed error bounds. Efficient algorithms are studied for bounding the set of guaranteed parameter estimates, where, in order to enhance the solution procedure, we investigate a novel method using principles of moving-horizon estimation. The principle of the method lies in selection of a subset of available measurements, which are then used for on-line calculations. The crucial part of the method is the selection procedure of these measurement points, where we propose three different methods. We apply the proposed methodology to a case study of a membrane process. The proposed approach is found to significantly reduce the computational burden, in terms of CPU time, as compared to state-of-the-art approaches.
机译:本文涉及在有界测量误差的情况下非线性动态系统的有保证参数估计。问题包括近似所有可能的参数值的集合,以使工厂输出的预测值在规定的误差范围内与它们的相应测量值匹配。对有效算法进行了界定,以保证参数估计集的边界,其中,为了增强求解程序,我们研究了一种采用移动水平估计原理的新颖方法。该方法的原理在于选择可用测量的子集,然后将其用于在线计算。该方法的关键部分是这些测量点的选择过程,在此我们提出了三种不同的方法。我们将建议的方法应用于膜过程的案例研究。与最先进的方法相比,发现所提出的方法在CPU时间方面显着减少了计算负担。

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