基于系统电路的电压崩溃机理及其解流形

Yongqiang Liu, Jie Wu, Y. Ni, F. Wu
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引用次数: 0

摘要

当负荷参数超过某一临界值时,电力系统就会出现电压崩溃的问题。临界工作点在P-V曲线上被称为鼻尖点。本文从系统电路和解流形的角度阐述了电压崩溃的机理。推导了相应的数学模型。已证明的定理表明,电压崩溃的根本原因是注入支路方程的解流形与线性网络方程的解流形不相交。证明了解流形的非横向与电压崩溃和静态分岔的符合性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Voltage collapse mechanism based on system circuit and its solution manifolds
The problem of voltage collapse in the power system occurs when the load parameter exceeds some critical value. The critical operation point is known as the nose point in the P-V curve. In this paper, the mechanism of voltage collapse is explained based on system circuit and solution manifolds. The corresponding mathematical model is derived. The proven theorem shows that the essential reason for voltage collapse is that the solution manifold of injection branch equations being not transversal with that of linear network equations. The coincidence of the nontransversal of solution manifolds with voltage collapse and static bifurcation is proved.
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