Enhancement of Power System Operation by Renewable Ancillary Service

T. Ku, Chia-Hung Lin, Cheng-Ting Hsu, Chao-Shun Chen, Zhan-Yi Liao, Shuo-De Wang, Fung-Fei Chen
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引用次数: 13

Abstract

To accommodate high penetration of renewable energy in the bulk power system, the ancillary service of PV systems and wind generators was proposed so that the renewable power generation can be controlled according to the variation of system frequency and voltage. For the N-1 contingency of transmission line tripping, the participation factors of renewable systems was derived to determine the generation curtailment of PV systems to solve the overloading problem of transmission lines. The power flow analysis was executed to illustrate the effectiveness of reactive power generation by renewable energy to support the voltage quality for system steady state operation. The transient stability analysis was also performed to investigate the transient response of system frequency after contingency of generator tripping by considering the ancillary service of emergency generation control of renewable energy. Based on the computer simulation, the ancillary service of renewable energy is very critical for the voltage support of power systems with large renewable integration. The fast ramping up capability of power generation of renewable systems with smart inverters can also improve the system transient stability effectively for system severe disturbance.
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利用可再生能源辅助服务改善电力系统的运作
为了适应可再生能源在大容量电力系统中的高渗透率,提出了光伏系统和风力发电机的辅助服务,使可再生能源发电能够根据系统频率和电压的变化进行控制。针对N-1输电线路跳闸事故,导出可再生能源系统的参与因子,确定光伏系统的弃电量,以解决输电线路过载问题。通过潮流分析,说明了可再生能源无功发电对支持系统稳态运行电压质量的有效性。考虑可再生能源应急发电控制的辅助服务,进行暂态稳定性分析,研究发电机跳闸事故后系统频率的暂态响应。基于计算机仿真的结果表明,可再生能源辅助服务对于大型可再生能源集成电力系统的电压保障至关重要。智能逆变器可再生能源发电的快速提升能力也能有效提高系统在严重扰动下的暂态稳定性。
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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