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      水风光多能互补系统多目标优化调度研究进展

      Research progress on multi-objective optimal operation of hydro-wind-solar complementary system

      • 摘要: 水风光多能互补是构建新型电力系统、实现“双碳”目标的重要途径之一。通过发挥水能、风能与太阳能在时间与空间上的互补特性,可有效提升新能源的消纳能力与利用效率。系统梳理了水风光多能互补系统多目标优化调度的研究进展。首先,从水风光多能互补系统的组成结构及其协同机制出发,深入分析了梯级水电在平抑风光出力波动、增强系统调节能力方面的关键作用;其次,围绕水风光多能互补系统多目标调度的建模方法、智能优化算法及出力不确定性处理策略,归纳总结了当前在提升发电效益、增强出力平稳性及满足生态约束等方面的研究成果与工程实践;最后,针对现有研究中存在的问题与挑战,探讨了未来的研究方向,以期为中国风光资源的高效利用、清洁能源基地的优化开发及能源结构转型提供参考。

         

        Abstract: Hydro-wind-solar complementary is one of the important ways to build a new power system and achieve the carbon peaking and carbon neutrality goals.By giving full play to the complementary characteristics of water energy, wind energy and solar energy in time and space, the consumption capacity and utilization efficiency of new energy can be effectively improved.The research progress of multi-objective optimal scheduling of hydro-wind-solar complementary system was systematically reviewed.Firstly, starting from the composition structure and coordination mechanism of hydro-wind-solar complementary system, the key role of cascade hydropower in stabilizing wind-solar output fluctuation and enhancing system regulation ability was deeply analyzed.Secondly, focusing on the modeling method, intelligent optimization algorithm and output uncertainty processing strategy analysis of multi-objective scheduling of hydro-wind-solar complementary system, the current research results and engineering practices in improving power generation efficiency, enhancing output stability and satisfying ecological constraints were summarized.Finally, in view of the problems and challenges existing in the research, the future research directions were discussed in order to provide a reference for the efficient utilization of Chinese scenery resources, the optimal development of clean energy bases and the transformation of energy structure.

         

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