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A new efficient nonlinear programming based method for branch overload elimination

机译:基于高效非线性规划的支路过载消除新方法

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摘要

A simple and efficient method for eliminating branch overloads in power systems is presented in this paper. The overloads are eliminated by corrective control actions, which are defined through the use of an efficient and accurate nonlinear programming method. Generation rescheduling (GR) and load shedding (LS) are the main controls used. The idea of adaptative local optimization (ALO) is introduced. The computation of appropriate GR using ALO becomes a very efficient process. LS is used as a last resort, when further GR is no longer possible. Heuristics are added in order to speed up the computation process and to take into account some practical aspects of power systems operation into it. A special procedure is carried out in case of critical situations, where emergency control actions are defined. The method's general idea is to keep the new secure operating point as close as possible to the original one, while minimizing the amount of LS. The method can be a helpful tool for operation planning studies, security analysis and reliability evaluation of power systems. Simulations have been carried out for small test to large real life systems in order to show the efectiveness of the proposed method.
机译:本文提出了一种消除电力系统分支过载的简​​单有效的方法。通过纠正控制措施消除了过载,这些纠正措施是通过使用高效,准确的非线性编程方法来定义的。生成重新计划(GR)和减载(LS)是使用的主要控件。介绍了自适应局部优化(ALO)的思想。使用ALO计算适当的GR成为非常有效的过程。当不再可能进行进一步的GR时,将LS作为最后的手段。添加了启发式方法,以加快计算过程并考虑到电力系统运行的一些实际方面。在定义紧急控制措施的紧急情况下,将执行特殊程序。该方法的总体思路是使新的安全工作点尽可能接近原始安全工作点,同时最大程度地减少LS的数量。该方法可以为电力系统的运行计划研究,安全性分析和可靠性评估提供有用的工具。为了证明所提出方法的有效性,已经对大型现实系统的小型测试进行了仿真。

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