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“风光水”互补发电系统的调度策略
引用本文:陈丽媛,陈俊文,李知艺,庄晓丹. “风光水”互补发电系统的调度策略[J]. 电力建设, 2013, 0(12): 1-6
作者姓名:陈丽媛  陈俊文  李知艺  庄晓丹
作者单位:浙江大学电气工程学院;沈阳工业大学电气工程学院;浙江省电力公司信息通信分公司
基金项目:国家高技术研究发展计划项目(863计划)(SQ2010AA0523069001)
摘    要:已有的可再生能源发电调度策略的研究成果大多针对单一风能或太阳能以及“风光”、“风水”互补发电系统,较少涉及到综合了“风光水”3种能源的互补发电系统。为此,提出了“风光水”互补发电系统的调度策略,在综合考虑了投资、系统运营成本、环境治理等因素,以及孤网、并网这2种运行方式的前提下,建立了最低成本的优化模型。在此基础上,提出了“风光水”互补发电系统的调度策略,实现了“风光水”这3种新能源输出功率的最佳配置,相关仿真结果验证了上述调度策略的可行性。研究表明,最优运行和调度策略可以评估系统在不同运行方式下的经济性能,提高互补系统的可靠性和灵活性。

关 键 词:“风光水”互补发电系统  优化模型  调度策略  仿真模型

Scheduling Strategy of Wind-Photovoltaic-Hydro Hybrid Generation System
CHEN Liyuan;CHEN Junwen;LI Zhiyi;ZHUANG Xiaodan. Scheduling Strategy of Wind-Photovoltaic-Hydro Hybrid Generation System[J]. Electric Power Construction, 2013, 0(12): 1-6
Authors:CHEN Liyuan  CHEN Junwen  LI Zhiyi  ZHUANG Xiaodan
Affiliation:CHEN Liyuan;CHEN Junwen;LI Zhiyi;ZHUANG Xiaodan;College of Electrical Engineering,Zhejiang University;College of Electrical Engineering,Shenyang University of Technology;Information and Communications Branch Company of Zhejiang Electric Power Company;
Abstract:The existing research achievements on the scheduling strategy of renewable energy power generation are mostly for wind power, solar power or wind-photovoltaic generation system, wind-hydro generation system, but less involve wind-photovoltaic-hydro hybrid generation system. So this paper proposed the scheduling strategy for the hybrid generation system. The lowest-cost optimization model was built under two operation modes: isolated and grid-connected operation, with considering investment, operating costs of system and environmental governance. Then, this paper proposed the scheduling strategy of the hybrid generation system to realize the best configuration of output power of the three resources, whose feasibility was verified by related simulation results. The results show that the optimal operation and scheduling strategy can assess the economical performance of the system under different operation modes, thus improve the reliability and flexibility of the hybrid system.
Keywords:wind-photovoltaic-hydro hybrid generation  optimization model  scheduling strategy  simulation model
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