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Closed loop flow detection in power systems based on Floyd-Warshall algorithm

机译:基于Floyd-Warshall算法的电力系统闭环流动检测

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The European transmission system operators of today have to struggle with a general increase in power flows, leading more and more to line congestions in certain transmission corridors. One reasonable countermeasure for this is active power flow control using power flow controlling devices (PFCD) like phase shifting transformers (PST) or Flexible AC Transmission Systems (FACTS). To avoid negative interdependencies between these utilities in different European control areas, the need for coordination of these PFCDs is expected to rise. During these coordination it is important to avoid the occurrence of closed loop flows after PFCD adaptation. Closed loop flows are circulated active power flows, which increase the grid losses. This paper proposes to use the shortest path method from Floyd-Warshall algorithm and adapt it for the detection of closed loop flows in power systems. The method is tested on standard IEEE test systems.
机译:今天的欧洲传输系统运营商必须努力争取权力流量的一般增加,导致某些传输走廊中的挤压越来越多。一种合理的对策是使用电流控制装置(PFCD)类似相位变换变压器(PST)或柔性AC传输系统(事实)的有源电流控制。为避免在不同欧洲控制领域的这些公用事业之间的负相互依赖性,预计对这些PFCD的协调需要。在这些协调期间,重要的是在PFCD适应后避免闭环流动的发生。闭环流是循环的主动电流,这增加了网格损耗。本文建议使用Floyd-Warshall算法的最短路径方法,并使其适应电力系统中的闭环流量。该方法在标准IEEE测试系统上进行了测试。

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