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Power system transient stability analysis through a homotopy analysis method

机译:基于同伦分析法的电力系统暂态稳定分析

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As an important function of energy management systems, online contingency analysis plays an important role in providing power system security warnings of instability. At present, N-1 contingency analysis still relies on time-consuming numerical integration to assess transient stability. To reduce computational cost, this paper proposes a transient stability analysis method based on homotopy analysis. The proposed method analyzes power system transient stability by computing bifurcation points of nonlinear differential equations. These bifurcation points constitute transient stability region boundaries. The method judges if the post-fault system can survive a disturbance by analyzing whether the initial values following fault clearance locate within the boundaries. The proposed method provides an alternative approach to assessing power system transient stability instead of traditional numerical integration. A simple case is presented to demonstrate application of the proposed method; the analysis results of the proposed method are consistent with the results of numerical integration.
机译:在线应急分析作为能源管理系统的重要功能,在提供电力系统不稳定的安全警告方面发挥着重要作用。目前,N-1权变分析仍依靠耗时的数值积分来评估暂态稳定性。为了降低计算成本,本文提出了一种基于同态分析的暂态稳定性分析方法。该方法通过计算非线性微分方程的分歧点来分析电力系统的暂态稳定性。这些分叉点构成了瞬态稳定区域的边界。该方法通过分析故障清除后的初始值是否位于边界内,来判断故障后系统是否能幸免于扰。所提出的方法代替传统的数值积分提供了一种替代的方法来评估电力系统的暂态稳定性。给出了一个简单的例子来说明所提出的方法的应用。所提方法的分析结果与数值积分结果吻合。

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