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Feasibility of DSR applications in transmission grid operation-Control of power flow and imbalanced voltage

机译:DSR在电网运行中的可行性-功率流和不平衡电压的控制

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Distributed Series Reactors (DSRs) can be used to control power flow to more fully utilize the capacity of a transmission network, delaying investment in new transmission lines. In this paper the IEEE 39 bus standard test system is modified to a 3-phase, unbalanced model consisting of 230 kV, 345 kV and 500 kV lines, where lines of different voltage run in parallel. This model is used to study load growth and the effect of adding DSRs to alleviate resulting overloads, and in particular to alleviate overloads on lines of different voltage running in parallel. The economic benefit of adding DSRs to the network is compared to the addition of new transmission lines in the network. In the second part of the paper the effect of unsymmetrical operation of DSRs on a single transmission line is studied and compared to the symmetrical operation of DSRs. It is found that unsymmetrical operation of DSRs is more economical. Finally the unsymmetrical operation of DSRs to reduce voltage imbalance in the network is considered. (C) 2015 Elsevier B.V. All rights reserved.
机译:分布式串联电抗器(DSR)可用于控制功率流,以更充分地利用传输网络的容量,从而延迟了对新传输线的投资。本文将IEEE 39总线标准测试系统修改为一个三相不平衡模型,该模型由230 kV,345 kV和500 kV线路组成,其中不同电压的线路并行运行。该模型用于研究负载增长和添加DSR的效果,以减轻由此产生的过载,尤其是减轻并联运行的不同电压线路上的过载。将DSR添加到网络的经济利益与在网络中添加新的传输线相比。在本文的第二部分中,研究了DSR在单条传输线上的非对称操作的影响,并将其与DSR的对称操作进行了比较。发现DSR的非对称操作更为经济。最后,考虑了DSR的非对称操作以减少网络中的电压不平衡。 (C)2015 Elsevier B.V.保留所有权利。

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