FACTS Controllers to Improve Voltage Profile and Enhancement of Line Loadability in EHV Long Transmission Lines

C. B. Shankaralingappa, S. Jangamashetti
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引用次数: 26

Abstract

This paper presents optimum required rating of series and shunt flexible ac transmission systems controllers for EHVAC long transmission lines. This is achieved by computing `optimum compensation requirement' (OCR) for different loading conditions of EHVAC transmission systems. The OCR enables improvements to be made to the system loadability, total compensation requirement, line voltage profile and efficiency of power transmission. Two schemes of locating FACTS devices in long distance EHV transmission lines is discussed. In the first scheme, an UPFC of equal rating series and shunt compensator is connected on both ends of the line. In the second scheme SVC of equal rating is connected on both ends with a TCSC at the middle of the same line. For each scheme, requirement of series compensation Mvar, shunt compensation Mvar, Voltages (Vmax, Vmin), total Mvar requirement, Efficiency for surge impedance load is calculated and presented. The results are reported for line operation at surge impedance loading and a line angle of 30deg, chosen from the point of view of stability for voltage levels of 500 kv, 760 kv and 1100 kv under different operating conditions.
FACTS控制器用于改善超高压长距离输电线路的电压分布和增强线路负载性
本文介绍了超高压长输电线路串联和并联柔性交流输电系统控制器的最佳额定要求。这是通过计算不同负载条件下的“最佳补偿需求”(OCR)来实现的。OCR可以改善系统的可负荷性、总补偿要求、线路电压分布和输电效率。讨论了超高压长距离输电线路中FACTS装置的两种定位方案。在第一种方案中,在线路的两端连接一个等额定值串联和并联补偿器的UPFC。在第二种方案中,相等额定值的SVC在两端连接,在同一线路的中间连接一个TCSC。计算并给出了各方案对串联补偿Mvar、并联补偿Mvar、电压(Vmax、Vmin)、总Mvar需求、浪涌阻抗负载效率的要求。结果报告了在浪涌阻抗负载和30度线角下的线路运行,从500千伏、760千伏和1100千伏电压水平在不同运行条件下的稳定性角度选择。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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