并联无功补偿的最佳位置

A. Elansari, J. Burr, S. Finney, M. Edrah
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引用次数: 7

摘要

柔性交流输电系统(FACTS)已被用于改善电压稳定性和提高输电系统的总传输能力(TTC)。并联注入无功补偿,如机械开关电容器(MSC)、静态无功补偿器(SVC)和静态同步补偿器(STATCOM),作为提高输电线路性能的实用和经济有效的解决方案被广泛应用。本文阐述了一种确定无功并联补偿的最佳位置的新方法,作为一种将系统电压维持在可接受水平内的措施,从而减少损耗,提高系统利用率和提高稳定性。本文介绍了一种从经济性和安全性两方面考虑,确定并联补偿装置最优位置的新方法。利用NEPLAN电力系统分析工具,利用Kundur二区测试系统对新算法进行了评估和验证。结果表明,该方法可以有效地确定并联无功补偿的最佳位置。
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Optimal location for shunt connected reactive power compensation
Flexible AC Transmission Systems (FACTS) have been used to improve voltage stability and to increase Total Transfer Capability (TTC) of transmission systems. Shunt injected reactive power compensation such as Mechanically Switched Capacitors (MSC), Static VAr Compensators (SVC) and Static Synchronous Compensators (STATCOM) are widely used as practical and cost effective solutions to improve transmission line performance. This paper illustrates a new approach to determine optimal location for VAr shunt compensation as a measure to maintain system voltages within acceptable levels which leads to losses reduction, increased system utilization and improved stability. This paper introduces a new method to determine optimal location for shunt compensator devices considering both economic and security aspects. The Kundur two area test system is used to evaluate and validate the new algorithm using NEPLAN power system analysis tool. The results show the effectiveness of the new method to determine the optimal location for shunt VAr compensation.
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