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Control of Heterogeneous Groups of Systems Interconnected Through Directed and Switching Topologies

机译:通过定向拓扑和交换拓扑互连的系统的异构组的控制

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This note presents a technique to synthesize distributed controllers for the control of heterogeneous systems interconnected through switching directed interaction topologies. Groups of subsystems are defined with undirected interaction within, but directed interconnections between each other. This allows to construct a virtual symmetric interconnection matrix representation of the graph topology. The symmetry guarantees the existence of a diagonalizing transformation, which renders both analysis and synthesis problems particularly simple. Structural constraints on multipliers are used to reduce the complexity of the resulting coupled matrix inequalities to be of the order of a single subsystem times the number of groups. The problem can then be essentially solved by linear fractional transformation (LFT)-based linear parameter-varying (LPV) gain-scheduling synthesis methods, in which the possibly time-varying eigenvalues of the interconnection matrix act as the scheduling variables of the transformed problem.
机译:本说明提出了一种综合分布式控制器的技术,用于控制通过交换定向交互拓扑互连的异构系统。子系统组的定义是在彼此之间进行直接交互,但内部之间没有直接交互作用。这允许构造图拓扑的虚拟对称互连矩阵表示。对称性保证了对角线变换的存在,这使得分析和综合问题都特别简单。乘法器的结构约束用于将所得耦合矩阵不等式的复杂度降低到单个子系统乘以组数的数量级。然后,可以通过基于线性分数变换(LFT)的线性参数变化(LPV)增益调度合成方法从本质上解决该问题,其中互连矩阵的可能随时间变化的特征值充当已变换问题的调度变量。

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