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作 者:吴雪松 李夏阳 付菁 雷丽仙 WU Xuesong;LI Xiayang;FU Jing;LEI Lixian(Guangxi Vocational College of Water Resources and Elctric Power,Nanning 530023,China;China Energy Engineering Group Guangxi Electric Power Design Institute Co.,Ltd,Nanning 530007,China)
机构地区:[1]广西水利电力职业技术学院,广西南宁530023 [2]中国能源建设集团广西电力设计研究院有限公司,广西南宁530007
出 处:《红水河》2023年第1期90-93,共4页Hongshui River
基 金:2020年度广西高校中青年教师科研基础能力提升项目(2020KY33007);广西高等学校高水平创新团队及卓越学者计划资助项目(桂教人才[2020]6号)。
摘 要:在建设新型电力系统大力推动电源结构清洁绿色转型过程中,电网调峰压力增大,急需增加电力系统特别是电源侧的灵活调节能力。针对传统电源调峰中存在的调峰能力不足、手段单一、运行不灵活、调峰方式选择困难等问题,在应用新技术深度挖掘电源调峰潜力的基础上,综合考虑经济、环境、实施性等多种因素,优化电源侧调峰顺序。该方法在抽水蓄能电站、大型调峰电源建成前,为增加电力系统调节能力、提高电力系统运行灵活性提供了新路径,为建立辅助调峰市场平台提供参考。In the process of building a new power system to vigorously promote the clean and green transformation of the power supply structure, the peak regulation pressure of the power grid increases, and it is urgent to increase the flexible adjustment ability of the power system, especially the power supply side. Aiming at the problems of insufficient peak regulation ability, single means, inflexible operation and difficult selection of peak regulation mode in traditional power peak regulation, on the basis of applying new technology to deeply tap the potential of power peak regulation, the peak regulation order of power supply side is optimized by comprehensively considering various factors such as economy, environment and implementation. This method provides a new path for increasing the power system regulation capacity and improving the flexibility of power system operation before the completion of pumped storage power station and large peak regulating power supply, and provides a reference for establishing an auxiliary peak regulating market platform.
分 类 号:TM711[电气工程—电力系统及自动化]
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