Parameterization technique for the continuation power flow using the trivial and tangent predictor

A. Bonini Neto, D. Alves
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引用次数: 3

Abstract

This paper presents efficient geometric parameterization techniques using the tangent and the trivial predictors for the continuation power flow, developed from observation of the trajectories of the load flow solution. The parameterization technique eliminates the Jacobian matrix singularity of load flow, and therefore all the consequent problems of ill-conditioning, by the addition of the line equations which pass through the points in the plane determined by the variables loading factor and the real power generated by the slack bus, two parameters with clear physical meaning. This paper also provides an automatic step size control around the maximum loading point. Thus, the resulting method enables not only the calculation of the maximum loading point, but also the complete tracing of P-V curves of electric power systems. The technique combines robustness with ease of understanding. The results to the IEEE 300-bus system and of large real systems show the effectiveness of the proposed method.
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基于平凡预测器和切线预测器的连续潮流参数化技术
本文提出了有效的几何参数化技术,利用切线和平凡预测器对连续潮流进行参数化,这些参数化技术是从观察潮流解的轨迹发展而来的。参数化技术通过将平面上各点的直线方程添加到由加载系数和松弛母线产生的实际功率这两个具有明确物理意义的参数中,消除了负荷流的雅可比矩阵奇异性,从而消除了由此产生的所有病态问题。本文还提供了围绕最大加载点的自动步长控制。因此,所得到的方法不仅可以计算最大负载点,而且可以完整地跟踪电力系统的P-V曲线。该技术结合了健壮性和易于理解性。在IEEE 300总线系统和大型实际系统中的实验结果表明了该方法的有效性。
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