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An algorithm for solving piecewise-linear networks that include elements with discontinuous characteristics

机译:一种求解分段线性网络的算法,该分段线性网络包含具有不连续特征的元素

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In this paper, an algorithm for solving piecewise-linear networks that include elements with discontinuous characteristics is presented. The algorithm is based on modifications of the Katzenelson algorithm that traces the solution curve through regions where boundary conditions are satisfied. Jumps in the network output variables, caused by state changes of elements with discontinuous characteristics, may in turn result in additional state changes of piecewise-linear elements. To resolve these state changes, the network solution point is dragged over the line segment that connects the solution points at the discontinuity, and the network state is changed whenever boundary conditions are violated. Since the algorithm traces cause and effect sequence of state changes, it is well suited for application in time-domain simulations. The algorithm has been implemented in a simulator for piecewise linear networks, and extensively tested on networks encountered in power electronics. An example of such application is presented.
机译:本文提出了一种求解分段线性网络的算法,该分段线性网络包含具有不连续特征的元素。该算法基于Katzenelson算法的修改,该算法通过满足边界条件的区域来跟踪求解曲线。由具有不连续特性的元素的状态变化引起的网络输出变量的跳跃可能进而导致分段线性元素的其他状态变化。为了解决这些状态更改,将网络求解点拖到在不连续处连接求解点的线段上,并且只要违反边界条件,就更改网络状态。由于该算法跟踪状态变化的因果序列,因此非常适合在时域仿真中应用。该算法已在分段线性网络的模拟器中实现,并在电力电子技术中遇到的网络上进行了广泛的测试。给出了这种应用的一个例子。

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