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首页> 外文期刊>Circuits, systems, and signal processing >Decomposition of Third-Order Linear Time-Varying Systems into Its Second- and First-Order Commutative Pairs
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Decomposition of Third-Order Linear Time-Varying Systems into Its Second- and First-Order Commutative Pairs

机译:将三阶线性时变系统分解为二阶和一阶交换对

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摘要

Decomposition is a common tool for the synthesis of many physical systems. It is also used for analyzing large-scale systems which are then known as tearing and reconstruction. On the other hand, commutativity of cascade-connected systems has gained a great deal of interest, and its possible benefits have been pointed out on the literature. In this paper, the necessary and sufficient conditions for decomposition of any third-order linear time-varying system as a commutative pair of first- and second-order systems of which parameters are also explicitly expressed, are investigated. Further, additional requirements in case of nonzero initial conditions are derived. This paper highlights the direct formulas for realization of any third-order linear time-varying systems as a series (cascade) connection of first- and second-order subsystems. This series connection is commutative so that it is independent from the sequence of subsystems in the connection. Hence, the convenient sequence can be decided by considering the overall performance of the system when the sensitivity, disturbance, and robustness effects are considered. Realization covers transient responses as well as steady-state responses.
机译:分解是综合许多物理系统的常用工具。它还可用于分析大型系统,这些系统后来被称为撕裂和重建。另一方面,级联系统的可交换性引起了极大的兴趣,其潜在的好处已在文献中指出。在本文中,研究了分解任何三阶线性时变系统的必要条件和充分条件,这些三阶线性时变系统是一对同时明确表示参数的一阶和二阶系统的可交换对。此外,推导了初始条件非零的其他要求。本文重点介绍了将任何三阶线性时变系统实现为一阶和二阶子系统的级联(级联)的直接公式。此串联连接是可交换的,因此它独立于连接中子系统的顺序。因此,在考虑灵敏度,干扰和鲁棒性影响时,可以通过考虑系统的整体性能来确定方便的顺序。实现包括瞬态响应和稳态响应。

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