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Assessment of branch outage contingencies using the continuation method

机译:使用延续方法评估分支中断突发事件

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This paper provides a contribution to the contingency analysis of electric power systems under steady state conditions. An alternative methodology is presented for static contingency analyses that only use continuation methods and thus provides an accurate determination of the loading margin. Rather than starting from the base case operating point, the proposed continuation power flow obtains the post-contingency loading margins starting from the maximum loading and using a bus voltage magnitude as a parameter. The branch selected for the contingency evaluation is parameterised using a scaling factor, which allows its gradual removal and assures the continuation power flow convergence for the cases where the method would diverge for the complete transmission line or transformer removal. The applicability and effectiveness of the proposed methodology have been investigated on IEEE test systems (14, 57 and 118 buses) and compared with the continuation power flow, which obtains the post-contingency loading margin starting from the base case solution. In general, for most of the analysed contingencies, few iterations are necessary to determine the post-contingency maximum loading point. Thus, a significant reduction in the global number of iterations is achieved. Therefore, the proposed methodology can be used as an alternative technique to verify and even to obtain the list of critical contingencies supplied by the electric power systems security analysis function.
机译:本文为稳态条件下的电力系统应变分析提供了帮助。提出了一种用于静态偶发性分析的替代方法,该方法仅使用连续方法,因此可以准确确定装载裕度。提议的持续功率流不是从基本情况的工作点开始,而是从最大负载开始,并使用母线电压幅度作为参数来获得意外后负载裕量。使用比例因子对为应急评估选择的分支进行参数化,可以逐步删除该分支,并在方法因完全传输线或变压器去除而分叉的情况下,确保持续的潮流收敛。已经在IEEE测试系统(14、57和118总线)上研究了所提出方法的适用性和有效性,并与持续功率流进行了比较,该连续功率流从基本案例解决方案中获得了事后的负载裕度。通常,对于大多数已分析的偶发事件,只需几次迭代即可确定偶发事件后的最大加载点。因此,大大减少了全局迭代次数。因此,所提出的方法可以用作一种替代技术,以验证甚至获得由电力系统安全分析功能提供的紧急情况清单。

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