电力系统无方程动态建模与分岔点检测

U. Mumbaikar, G. Wang, S. Bhil, N. Singh, A. Stankovic
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引用次数: 0

摘要

无方程技术是在多尺度方法的基础上,在精细尺度上对粗尺度的动力学进行解释。它已在物理、化学工程、数学和生物学等领域使用多年。随着电力系统组件模型的日益复杂,传统的系统级行为分析方法具有不确定性或计算上的局限性。这种技术有可能克服系统级模型的不可用性,并同时提供准确的结果,而不需要太昂贵的计算成本。本文实现了一种确定简单电力系统电压崩溃点的无方程技术。该技术是用动态相量来获取系统的动态特性。通过观察动态相量系数图来检测分岔点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Equation-free dynamic modelling of power system and detection of bifurcation point
Equation-free technique is based on multiscale approach which operates on fine scale to elucidate dynamics of coarse scale. It has been used for years in fields such as physics, chemical engineering, mathematics and biology. With increasing complexity of power system component models, the analysis of system level behaviour is uncertain or is computationally prohibitive by conventional methods. This technique has potential to overcome unavailability of a system level model and provide accurate results simultaneously without being computationally too expensive. This paper implements the equation-free technique to determine the point of voltage collapse in a simple power system. The technique is used to acquire dynamics of system in terms of dynamic phasors. The bifurcation point is detected by observing the dynamic phasor coefficient plot.
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