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Dynamic Characterization of Typical Electrical Circuits via Structural Properties

机译:通过结构特性动态表征典型电路

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摘要

The characterization of a class of electrical circuits is carried out in terms of both stability properties and steady-state behavior. The main contribution is the interpretation of the electrical topology (how the elements that conform the circuits are interconnected) in terms of mathematical properties derived from the structure of their models. In this sense, at what extent the topology by itself defines the dynamic behavior of the systems is explained. The study is based on the graph theory allowing capturing, departing from the well-known Kirchh off laws, the topology of the circuits into several matrices with specific structure. The algebraic analysis of these matrices permits identifying conditions that determine whether the system is stable in the sense of Lyapunov and the kind of steady-state behavior that it exhibits. The approach is mainly focused on typical topologies widely used in practice, namely, radial, ring, and mesh networks.
机译:一类电路的表征是根据稳定性和稳态行为来进行的。主要贡献在于根据从其模型结构得出的数学特性来解释电气拓扑(构成电路的元素如何互连)。从这个意义上讲,拓扑在多大程度上定义了系统的动态行为。这项研究基于图论,可以将电路的拓扑结构捕获成具有特定结构的多个矩阵,而这与著名的基尔休夫定律不同。这些矩阵的代数分析可以确定条件,这些条件确定系统在Lyapunov方面是否稳定以及系统所表现出的稳态行为。该方法主要集中于实践中广泛使用的典型拓扑,即径向,环形和网状网络。

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  • 来源
    《Mathematical Problems in Engineering》 |2016年第9期|7870462.1-7870462.13|共13页
  • 作者单位

    UNAM, Fac Ingn, Edificio Posgrad,Segundo Piso,Ciudad Univ, Ciudad De Mexico 04510, DF, Mexico;

    UNAM, Fac Ingn, Edificio Posgrad,Segundo Piso,Ciudad Univ, Ciudad De Mexico 04510, DF, Mexico;

    UNAM, Fac Ingn, Edificio Posgrad,Segundo Piso,Ciudad Univ, Ciudad De Mexico 04510, DF, Mexico;

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