采用并联无功补偿和分布式发电提高电力系统可靠性

M. Mahmoud, A. Faza
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引用次数: 0

摘要

由于电力需求的增加,电力系统已经变得高度紧张。这导致了级联故障的频繁发生,其中一条线路的故障导致一系列故障,导致系统停电。增加对电力系统不同电气参数的高速控制有助于提高电力系统的可靠性,减轻电力系统的压力。本文从可靠性的角度研究了静态无功补偿器(SVCs)和分布式发电机组的加入对系统的影响。由于安装这种设备可能很昂贵,因此开发了一种算法来获得安装这种设备的最佳总线位置,从而提高了可靠性。此外,蒙特卡罗仿真还为在输电线发生故障时提高系统可靠性提供了一种方法。结果表明,注入实功率和无功功率总体上提高了系统的可靠性。然而,增加注入量和增加无限注入的总线数量并不一定会进一步提高系统的可靠性。因此,当目标是提高系统可靠性时,在部署svc或分布式发电源时必须谨慎。
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Reliability improvement of power systems using shunt reactive compensation and distributed generation
Due to the increased demand on electric power, power systems have become highly stressed. This has caused the frequent occurrence of cascading failures, where the failure of one line leads to a series of failures causing a system blackout. Adding high speed control of different electrical parameters of the power system can help improve the reliability of the power system and relieve some of that stress. In this research, the effects of adding static VAR compensators (SVCs) and distributed generation units has been studied from a reliability perspective. Since installing this equipment can be expensive, an algorithm has been developed to obtain the optimal bus location to install such devices, such that reliability is improved. Furthermore, Monte Carlo simulation is used to provide a measure for the improvement in system reliability in the presence of transmission line failures. Results show that injecting real and reactive power generally improves system reliability. However, increasing the amount of injection and increasing the number of buses injected to indefinitely does not necessarily enhance the reliability of the system any further. As such, caution must be exercised when deploying SVCs or distributed generation sources when the goal is to improve system reliability.
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