水风光多能互补运行关键技术研究现状及展望  

Key Technologies for Hydro-wind-solar Multi-energy Complementary Operation:Research Status and Prospect

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作  者:余意 李俊贤 蒋定国 邓友汉[1,2] 陈静 YU Yi;LI Junxian;JIANG Dingguo;DENG Youhan;CHEN Jing(China Yangtze Power Co.,Ltd.,Wuhan 430010,China;Science and Technology Research Institute of China Three Gorges Corporation,Beijing 101100,China;China Three Gorges Renewables(Group)Co.,Ltd.,Beijing 101100,China)

机构地区:[1]中国长江电力股份有限公司,武汉430010 [2]中国长江三峡集团有限公司科学技术研究院,北京101100 [3]中国三峡新能源(集团)股份有限公司,北京101100

出  处:《长江技术经济》2024年第2期35-42,47,共9页Technology and Economy of Changjiang

基  金:湖北省科技重点研发计划项目(2022AAA007)。

摘  要:在全球能源结构转型背景下,水风光多能互补系统作为现代能源体系关键组成部分,正日益受到重视。探讨了我国水风光资源分布情况,并分析了互补基地建设规划。剖析了水风光多能互补系统在规划期资源评估与系统集成、运行期预报调度与高效运行、消纳期电力交易与市场营销等关键阶段技术挑战。总结了当前在资源评估方法创新、系统集成优化、智能调度系统开发以及储能技术应用等方面最新研究进展,并对未来研究趋势进行了前瞻性展望,研究成果可为相关领域研究和实践提供参考和借鉴。In the background of global energy structural transformation,the hydro-wind-solar multi-energy complementary system,as an essential part of modern energy systems,is receiving increasing attentions.In this paper we examine the distribution of water and wind resources in China and analyze the construction planning for complementary bases.We further scrutinize the technological challenges encountered in critical stages of the hydro-wind-solar multi-energy complementary systems.These challenges include resource assessment and system integration during planning,forecasting and dispatching and efficient operation in operation period,and power trading and marketing during consumption.Additionally,we summarize the latest research progresses in resource assessment methods,system integration and optimization,intelligent dispatch system development,and energy storage technology application.Finally,we offer insights into future research trends.This work serves as an important reference for both research and practical applications in related fields.

关 键 词:水风光互补 多能互补系统 资源评估 运行调度 电力交易 

分 类 号:X171[环境科学与工程—环境科学] TV74[水利工程—水利水电工程]

 

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