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Power Upgrading of Transmission Line by Combining AC–DC Transmission

机译:交直流输电相结合的输电线路功率提升

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Long extra high voltage (EHV) ac lines cannot be loaded to their thermal limits in order to keep sufficient margin against transient instability. With the scheme proposed in this paper, it is possible to load these lines very close to their thermal limits. The conductors are allowed to carry usual ac along with dc superimposed on it. The added dc power flow does not cause any transient instability. This paper presents the feasibility of converting a double circuit ac line into composite ac-dc power transmission line to get the advantages of parallel ac-dc transmission to improve stability and damping out oscillations. Simulation and experimental studies are carried out for the coordinated control as well as independent control of ac and dc power transmissions. No alterations of conductors, insulator strings, and towers of the original line are needed. Substantial gain in the loadability of the line is obtained. Master current controller senses ac current and regulates the dc current orders for converters online such that conductor current never exceeds its thermal limit
机译:不能将较长的超高压(EHV)交流线路加载到其热限制,以保持足够的余量以防止瞬态不稳定。利用本文提出的方案,可以将这些线路的负载非常接近其热极限。允许导体携带普通的交流电以及叠加在其上的直流电。增加的直流潮流不会引起任何瞬态不稳定性。本文介绍了将双回路交流线路转换为复合交流-直流输电线路的可行性,以获取并行交流-直流输电的优势,以提高稳定性并抑制振荡。针对交流和直流输电的协调控制以及独立控制进行了仿真和实验研究。无需更改原始线路的导体,绝缘子串和塔架。获得了线路可装载性的显着提高。主电流控制器可感测交流电流并在线调节转换器的直流电流命令,以使导体电流永远不会超过其热极限

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