在statcom安装的高风能渗透电网中,功率路由器的优化分配

Yi Deng, G. Venayagamoorthy, R. Harley
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引用次数: 6

摘要

风力发电作为一种可再生能源继续增长。然而,增加间歇性可再生能源可能会导致线路过载以及低压母线。静态同步补偿器(STATCOMs)可以提供显著的无功功率以保证电压稳定,但仍然可能存在过载线路。因此,需要功率路由器,将电力从过载的线路路由到未充分利用的线路。为了以最低的成本提供最佳的功率流控制,功率路由器应根据其额定值和位置进行优化设计。电源路由器与statcom之间的协调也需要考虑。本文介绍了一种基于粒子群优化算法确定电力系统中电力路由器最优位置和规模的一般方法。在一个12总线测试系统上进行了仿真研究,验证了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal allocation of power routers in a STATCOM-installed electric grid with high penetration of wind energy
Wind generation continues to increase as a source of renewable energy. However, adding intermittent renewable energy may lead to overloaded lines as well as low voltage buses. Static synchronous compensators (STATCOMs) can provide significant reactive power to ensure the voltage stability, but overloaded lines may still exist. Therefore, power routers, which route power away from overloaded lines to underutilized lines, are required. In order to provide the best power-flow control with the lowest cost, the power routers should be optimally designed, for both their ratings and locations. The coordination between the power routers and the STATCOMs should also be taken into consideration. This paper introduces a general approach to determine the optimal location and sizing of the power routers for a power system with overloaded lines, based on a particle swarm optimization (PSO) algorithm. Simulation studies on a 12-bus test system verify the proposed method.
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