Variable time step, implicit integration for extended-term power system dynamic simulation

J. Sanchez-Gasca, R. D'aquila, W. Price, J. Paserba
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引用次数: 55

Abstract

This paper describes the development of a variable time step algorithm for the numerical simulation of power system phenomena spanning time periods from several seconds to several hours. The algorithm automatically reduces the time step of integration to capture fast transients and increases it when the system variables are varying slowly. The solution algorithm is based on a numerically stable, implicit, low order integration similar to the trapezoidal rule. Computer simulation results for two scenarios are presented. These scenarios are: a severe power system load ramp leading to voltage collapse; and a six-hour operational cycle.
变时间步长、隐式积分的长期电力系统动态仿真
本文描述了一种变时间步长算法的发展,用于从几秒到几小时不等的电力系统现象的数值模拟。该算法在捕捉快速瞬态时自动减小积分时间步长,在系统变量变化缓慢时自动增大积分时间步长。求解算法是基于一个数值稳定,隐式,低阶积分类似于梯形规则。给出了两种情况下的计算机仿真结果。这些场景包括:电力系统负荷严重匝道导致电压崩溃;六个小时的操作周期。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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