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Control of Heterogeneous LPV Subsystems Interconnected Through Arbitrary and Switching Directed Topologies

机译:通过任意和切换定向拓扑控制互联的异构LPV子系统的控制

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This paper introduces a novel technique for the synthesis of distributed Linear Parameter-Varying (LPV) controllers for heterogeneous LPV systems interconnected through arbitrary, time-varying, directed interaction topologies. A distributed system is constructed from interconnected subsystems for which a novel manipulation of interconnection channels is proposed that renders any interconnection representable as a virtual normal interconnection matrix. This guarantees the existence of a unitary diagonalizing transformation. The synthesis problem can then be essentially solved by Linear Fractional Transformation (LFT)-LPV gain-scheduling synthesis methods, in which the possibly varying eigenvalues of the virtual interconnection matrix act as the scheduling variables of the transformed problem and the computational complexity is in the order of a single subsystem. The method is benchmarked against an existing one and shows superior performance in both a numerical example and the leader-follower formation control problem of LPV quadrocopter models.
机译:本文介绍了一种新颖的技术,用于合成通过任意,时变的相互作用拓扑互连的非均质LPV系统的分布式线性参数变化(LPV)控制器。分布式系统由互连的子系统构成,其中提出了一种新颖的互连信道的操纵,从而使得可作为虚拟正常互连矩阵表示的任何互连。这保证了整体对角化转换的存在。然后可以通过线性分数转换(LFT)-LPV增益调度合成方法基本上解决了合成问题,其中虚拟互连矩阵的可能变化的特征值充当转换问题的调度变量,并且计算复杂性在单个子系统的顺序。该方法采用现有的方法基准测试,并在LPV二元模型的数值和引导跟随器形成控制问题中显示出优异的性能。

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