Available transfer capability model and calculation considering static security constraints and the saddle node bifurcation

Chunping Liu, X. Tong, R. Zhou, Xuehua Deng
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Abstract

In power market environment, available transfer capability (ATC) is an important index concerned by market participants and system operators. Conventional ATC model includes a set of equality and inequality constraints. In this paper, using a pointwise maximum function, inequalities constraints of static security are transformed into one semismooth equation which can be smoothed by the introduction of a smoothing function. By integrating the saddle node bifurcation limit with smoothing static security constraints, a smoothing ATC model is constructed, which considers security and stability simultaneously. The Levenberg-Marquardt algorithm is applied to solve the smoothing ATC model. Numerical simulation results of the 30-bus system show the proposed model and calculation method are feasible and effective.
考虑静态安全约束和鞍节点分岔的可用转移能力模型及计算
在电力市场环境下,有效输电能力(ATC)是市场参与者和系统运营商关注的重要指标。传统的ATC模型等式和不等式约束包括一组。本文利用逐点极大值函数,将静态安全不等式约束转化为一个可通过引入平滑函数进行平滑的半光滑方程。通过将鞍节点分岔极限与平滑静态安全约束相结合,构造了同时考虑安全性和稳定性的平滑ATC模型。采用Levenberg-Marquardt算法求解光滑ATC模型。对30总线系统的数值仿真结果表明,所提出的模型和计算方法是可行和有效的。
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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