Fully Probabilistic Design for Stochastic Discrete System with Multiplicative Noise

Yuyang Zhou, R. Herzallah, Ana Zafar
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引用次数: 7

Abstract

In this paper, a novel algorithm based on fully probabilistic design (FPD) is proposed for a class of linear stochastic dynamic processes with multiplicative noise. Compared with the traditional FPD, the new procedure is presented to deal with multiplicative noise and the system parameters are estimated online using linear optimisation methods. The performance index is characterised by the Kullback-Leibler divergence (KLD) distance. The generalised probabilistic control law is obtained by solving a generalised Riccatti equation that takes the multiplicative noise into consideration. To demonstrate the effectiveness of the proposed method, a numerical example is given and the results are compared with the traditional FPD.
具有乘性噪声的随机离散系统的全概率设计
针对一类具有乘性噪声的线性随机动态过程,提出了一种基于全概率设计(FPD)的算法。与传统的FPD相比,提出了新的处理乘性噪声的方法,并采用线性优化方法在线估计系统参数。性能指标的特征是Kullback-Leibler散度(KLD)距离。通过求解考虑乘性噪声的广义Riccatti方程,得到了广义概率控制律。为了验证该方法的有效性,给出了一个数值算例,并将结果与传统的FPD进行了比较。
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