时域电路分析:形成系统矩阵指数并由此得到电路自然响应的运算方法

I. R. Rao, K. Shubhanga
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引用次数: 1

摘要

提出了一种用于无力线性时不变(LTI)集总参数电气系统动态分析的时域运算方法。从系统的状态模型出发,提出了一种获取矩阵指数(状态转移矩阵)的纯时域方法。这种方法保留了所有网络变量的时域同一性(与转换方法不同),并促进了对数字强加的系统参数的分析,封闭形式的解决方案(与数值技术不同)。此外,它在时域本身提供了“代数化”优势,其中系统变量是直接可观察的。这就避免了任何人工的和繁琐的转换(直接的和反向的)。本文采用这种方法,从共同控制上述网络行为的矢量化的时域微分方程集开始,制定任意给定阶的一般LTI集总参数电网络的自然(无力)响应的求解过程。强调了关于系统建模的一些关键方面。通过实例说明了所提出的方法可以很容易地获得LTI系统在特定初始条件下的自然响应。
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Circuit analysis in the time-domain: Operational approach to form the system-matrix exponential and to obtain the circuit natural response therefrom
A time-domain operational method for the dynamic analysis of force-free Linear Time-Invariant (LTI) lumped-parameter electrical systems is presented. Starting from the state model of the system, a purely time-domain technique for obtaining the matrix exponential (state-transition matrix) has been developed. This approach preserves the time-domain identity of all the network variables (unlike the transformational approaches) and facilitates analytical, closed-form solutions for number-imposed system parameters (unlike numerical techniques). Furthermore, it provides the `algebrization'-advantage in the time-domain itself, in which the system variables are directly observable. This obviates the need for any artificial and cumbersome transformations (both direct and inverse). This approach has been here employed to formulate the solution process of the natural (force-free) response of a generic LTI lumped-parameter electrical network of any given order, starting from the vectorized set of time-domain differential equations that collectively govern the behaviour of the said network. Some crucial aspects regarding system modeling have been highlighted. The proposed method is illustrated by examples which demonstrate the ease with which the natural response of an LTI system could be obtained, for specified initial conditions.
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