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Control of an SSSC for oscillation damping of power systems with wind turbine generators

机译:具有风力发电机的电力系统振动阻尼的SSSC控制

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The increased adoption of wind generation capacity into worldwide electric power systems presents many challenges due to the intermittent nature of this energy resource. The equipment for flexible ac transmission systems (FACTS) are the focus of this paper with the goal of overcoming the difficulties of achieving improved electric power system reliability with large penetration of wind generation. FACTS equipment can also contribute towards reducing the cost of power system expansions by better utilizing existing assets to defer future infrastructure expenses. In addition, FACTS equipment can minimize issues concerning adequate damping of power oscillations, transmission capacities, and frequency regulation. The paper presents research results on improving power oscillation damping and increased transmission capacities under dynamic conditions using static synchronous series compensator (SSSC) technology. Detailed analysis and simulation of these factors are considered under normal and faulted in the power system network. Results of this investigation help in understanding the improvements that can be achieved by incorporating SSSC equipment in systems having large participation factors associated with wind turbine generators.
机译:由于这种能源的间歇性,越来越多的风力发电能力被应用到全球电力系统中提出了许多挑战。柔性交流输电系统(FACTS)的设备是本文的重点,目的是克服在风力发电大范围普及的情况下提高电力系统可靠性的困难。 FACTS设备还可以通过更好地利用现有资产来推迟未来的基础设施支出,从而有助于降低电力系统的扩展成本。此外,FACTS设备可以最大程度地减少有关功率振荡,传输容量和频率调节的阻尼问题。本文介绍了使用静态同步串联补偿器(SSSC)技术在动态条件下改善功率振荡阻尼和增加传输容量的研究成果。在电力系统网络正常和有故障的情况下,应考虑对这些因素的详细分析和仿真。这项调查的结果有助于理解可以通过将SSSC设备并入与风力涡轮发电机相关的参与因子较大的系统中来实现的改进。

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