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A method for determining the minimum dimension of the steady-stateequation of a switching network

机译:确定交换网络稳态方程最小维的方法

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In this paper, the concept of the steady-state variables (SSVs) of a switching network is presented. These variables represent the minimum set of state variables required to determine the steady-state operation of a switching network. The starting point of the SSV is a reduction of the dimension of the state equations in each sequence of operation, and their end result is a significant reduction of the number variables and equations in the steady-state problem. Using the concept of the SSV, the computation time and the convergence properties of any algorithm used to solve the steady-state equation can be greatly improved. A computer-based method will be presented for systematically determining the SSVs of a switching network. This algorithm is implemented with a simulation tool and an optimization program, which is used to solve the steady-state equation of a power converter. Based on the principle of the SSV, the computation of the steady-state solution of some power converters will be presented
机译:在本文中,提出了交换网络的稳态变量(SSV)的概念。这些变量表示确定交换网络的稳态操作所需的最小状态变量集。 SSV的出发点是在每个操作序列中减少状态方程的维数,而其最终结果是在稳态问题中显着减少数量变量和方程。使用SSV的概念,可以大大改善用于求解稳态方程的任何算法的计算时间和收敛性。将提出一种基于计算机的方法,用于系统地确定交换网络的SSV。该算法由仿真工具和优化程序实现,用于求解功率转换器的稳态方程。基于SSV原理,将介绍一些功率转换器的稳态解的计算

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