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Signal Selection for Estimation and Identification in Networks of Dynamic Systems: A Graphical Model Approach

机译:动态系统网络中估计和识别信号选择:图形模型方法

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Network systems have become a ubiquitous modeling tool in many areas of science where nodes in a graph represent distributed processes and edges between nodes represent a form of dynamic coupling. When a network topology is already known (or partially known), two associated goals are, to derive estimators for nodes of the network, which cannot be directly observed or are impractical to measure; and to quantitatively identify the dynamic relations between nodes. We address both problems in the challenging scenario where only some outputs of the network are being measured and the inputs are not accessible. The approach makes use of the notion of d-separation for the graph associated with the network. In the considered class of networks, it is shown that the proposed technique can determine or guide the choice of optimal sparse estimators. This article also derives identification methods that are applicable to cases where loops are present providing a different perspective on the problem of closed-loop identification. The notion of d-separation is a central concept in the area of probabilistic graphical models, thus an additional contribution is to create connections between control theory and machine learning techniques.
机译:网络系统已成为普遍存在的建模工具,在许多科学领域,其中曲线图中的节点代表节点之间的分布式过程,并且节点之间的边缘表示动态耦合的形式。当网络拓扑已经已知(或部分已知)时,两个相关目标是从网络的节点推导出来的估计,这不能直接观察到或者是不切实际的测量;并且定量地确定节点之间的动态关系。我们在具有挑战性的情况下解决了两个问题,其中只测量网络的一些输出并无法访问输入。该方法利用与网络相关联的图形的D分离的概念。在考虑的网络类别中,显示所提出的技术可以确定或指导最佳稀疏估计的选择。本文还衍生出适用于存在循环的情况的识别方法,在闭环识别问题提供不同的角度。 D-分离的概念是概率图形模型领域的中心概念,因此额外的贡献是在控制理论和机器学习技术之间创建连接。

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