基于最优成本的潮流叠加方法的物理拥塞管理

T. Leveringhaus, T. Breithaupt, L. Hofmann
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引用次数: 1

摘要

可再生能源法和传统资源的有限性迫使可再生能源发电能力的快速增长导致电力系统的根本修改。这种发展,加上新建输电线路进展缓慢,国际能源交易活动日益增多,使得电网拥堵成为过去几年tso的日常问题。本文描述了一种利用基于物理的叠加方法来管理拥塞的新方法。该方法的优点是提供结果非常快,因此也可以用于在线网络管理,但在准确性方面没有缺点。可以对该方法进行改进,以找到成本最优的解。首先从潮流计算的基本方程中推导出该方法,然后将其应用于电东电网互联网络数据集的实例研究。结果令人印象深刻地证明了该方法的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Physically based congestion management by powerflow superposition methods at optimal cost
Fast growing power capacities from renewable energies forced by Renewable energy laws and the finiteness of conventional resources lead to fundamental modifications of the power systems. This development combined with a slow proceeding in building new transmission lines and increasing international energy trading activities made network congestions became a daily problem of TSOs in the past years. This paper describes a new method for managing congestions by using a physically based superposition method. This method has the advantage to provide its results very fast, so it could also be used in online network management, but does not have disadvantages with regard to its accuracy. The method can be enhanced to find a solution at optimal costs. The method is firstly deduced from the basic equations of power flow calculation and is secondly applied to a dataset of the Interconnected Network of ENTSO-E within a case study. The results impressively demonstrate the performance of the method.
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