基于参数化协调组合的改进连续潮流计算方法

C. Ruan, X. Wang, Xi Wang, Fangyu Gao, Yepeng Li
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引用次数: 4

摘要

连续潮流(CPF)是最常用的电压稳定静态分析方法,它包括预测、步长控制、参数化和校正四个步骤,其中参数化是保证连续潮流计算成功的关键因素。首先对常用的参数化方法进行了性能分析,以预测点与CPF精确解之间的距离作为参数化方法优劣的评判标准。修正越接近,收敛速度越快。各种参数化方法在CPF解曲线的不同区域各有优缺点。因此,为了充分挖掘、利用和补充各参数化方法的信息,提出了一种协调组合的参数化方法。在PV曲线的不同区域采用不同的参数化方法,同时在PV曲线跟踪过程中设置参数切换断点,并以校正散度作为组合切换判据。最后分别采用定步法和经典变步法,在不同参数下进行了连续潮流计算。对IEEE 39总线的计算分析表明,所提出的协调组合参数化方法具有显著的有效性和优越性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improved Continuation Power Flow Calculation Method Based on Coordinated Combination of Parameterization
Continuation power flow (CPF) is the most commonly used voltage stability static analysis method, and it consists of four steps: prediction, step-size control, parameterization and correction, among which parameterization is a key factor to ensure the success of continuous power flow calculation. At first, a performance analysis of common parameterization methods is studied, the criterion for judging the merits of the parameterization method is the distance between the predicted point and the exact solution of the CPF. The closer, the faster the correction can be converged. Various parameterization methods varies in merits and demerits in the different regions of the CPF solution curve. Therefore, in order to fully exploit, use and complement the information of each parameterization method, a coordinated combination of parameterization method is proposed. Varies of the parameterization methods are adopted in different regions of PV curve, while also setting parametric switching breakpoints during the process of tracing PV curve, and using the divergence of correction as the combination switching criterion. Finally, applying fixed-step method and classic variable-step method, continuation power flow calculations are carried out respectively with different parameters. Computational analysis of the IEEE 39-bus shows that the proposed coordinated combination parameterization method has significant effectiveness and superiority.
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