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Steady-state and transient-stability analysis of series capacitors in long transmission lines

机译:长输电线路串联电容器的稳态和暂态稳定性分析

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摘要

IN long-distance large-block power transmission, where is reactance compensation applicable? The complete answer to this question involves the weighing of compensated line performance against its costs, tempered with engineering judgment. This paper presents the results of an analysis made to determine basic performance data of compensated lines under steady-state and transient conditions. The data presented therefore allow the question to be partly answered and, it is believed, to a sufficient degree to permit certain general conclusions to be drawn. The system designer is thus provided with the fundamentally necessary data permitting him to proceed with an economic analysis for his particular case, where the cost factors are available. It is felt that in this field lies the value of these data. The costs of the various factors for a particular case can be weighed with the performance obtained by the same factors. The best design must necessarily be one where per cent line compensation, number of parallel circuits, generator short-circuit ratio, and number of intermediate switching stations are all used to their optimum degree for a given reliability of service. The number of factors which may be varied obviously depends upon whether compensation is to be used for increasing the power limits of a system already in operation or to be used as a factor in the design of a projected system.
机译:在长距离大功率输电中,电抗补偿在哪里适用?对这个问题的完整答案包括根据工程判断权衡补偿线路性能与其成本之间的关系。本文介绍了分析结果,以确定稳态和瞬态条件下补偿线路的基本性能数据。因此,所提供的数据可以部分回答问题,并且可以相信,在一定程度上可以得出某些一般性结论。因此,为系统设计人员提供了基本必要的数据,使他可以对有成本因素的特定情况进行经济分析。可以感觉到,这些数据的价值在于该领域。特定情况下各种因素的成本可以与相同因素获得的性能进行权衡。最好的设计必须是这样一种设计:对于给定的服务可靠性,将线路补偿百分比,并联电路数量,发电机短路率和中间开关站数量全部以最佳程度使用。可以改变的因素的数量显然取决于是将补偿用于增加已在运行的系统的功率极限,还是用作投影系统设计中的因素。

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