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Feasibility study of a high-voltage DC AC multi-circuit hybrid transmission line

机译:高压交直流多回路混合输电线路的可行性研究

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With the ever-growing need for electric power in today's world, the power industry is being faced with both the realities of limited transmission resources and the high costs of new transmission right-of-way. High-voltage direct current (HVDC) transmission lines are a promising alternative to more traditional AC lines, offering reduced voltage drops over long distances and the possibility of reduced operating costs. With the current limits on right-of-way, however, the most cost-effective method to increase transmission capacity is by building HVDC circuits onto existing right-of-way, alongside AC transmission lines. However, the interaction between these new HVDC circuits and existing AC lines is of great concern, especially when both types of lines are placed on the same towers. Moreover, there is little existing research on the interaction between AC and HVDC transmission lines. This paper presents the outcome of a feasibility study that was undertaken to determine the severity and extent of AC/HVDC line interactions. This study focused on interactions caused by the close proximity of the transmission lines themselves, and not by connections between the circuits at either end. A three-circuit (one 115-kV AC, one 230-kV AC, and a bipolar /spl plusmn/500-kV DC) tower configuration was considered in the study, utilizing a 250-mile long transmission system and nine equivalent sources. Various faults and loading conditions were simulated on both types of lines to determine the effects of the AC circuits on the DC line, as well as the effects of the DC circuit on the AC lines. This paper presents the results of these simulations, which signify the feasibility of hybrid AC/HVDC transmission lines.
机译:随着当今世界对电力的不断增长的需求,电力行业既面临着有限的输电资源的现实,也面临着新的输电线路的高昂成本的现实。高压直流(HVDC)传输线是更传统的交流线的有前途的替代方案,可在长距离上降低压降,并有可能降低运营成本。但是,由于目前对通行权的限制,增加传输容量的最经济有效的方法是在现有的通行权上将HVDC电路与交流输电线路并排建造。但是,这些新的HVDC电路与现有AC线路之间的相互作用非常令人担忧,尤其是当两种类型的线路都放置在同一塔架上时。此外,关于交流和高压直流输电线路之间相互作用的研究很少。本文介绍了可行性研究的结果,该研究旨在确定AC / HVDC线路相互作用的严重性和程度。这项研究的重点是由传输线本身的紧密距离引起的相互作用,而不是由两端电路之间的连接引起的相互作用。研究中考虑了三回路(一个115 kV交流电,一个230 kV交流电和一个双极/ spl plusmn / 500 kV直流电)塔架配置,利用250英里长的输电系统和九个等效电源。在两种类型的线路上模拟了各种故障和负载条件,以确定AC电路对DC线路的影响以及DC电路对AC线路的影响。本文介绍了这些仿真的结果,表明了混合AC / HVDC输电线路的可行性。

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