提高虚拟电厂效率:与储能集成的三级优化

Q2 Energy
Yuanbao Zhou, Shan Wu, Yuxiang Deng, Meihui Jiang, Yuxin Fu
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引用次数: 0

摘要

本文提出了一个集成储能系统的虚拟电厂(vpp)的三阶段调度优化模型,以提高运行效率和经济可行性。该模式解决了分布式可再生能源(如风能和太阳能)日益一体化所带来的挑战,这往往导致发电量波动和电网不稳定。该模型采用系统的方法,建立了考虑不同储能设备响应速度和时间的日前、日内、实时调度框架。利用风能和太阳能发电综合预测,制定日前阶段(DAS)的申报输出计划;利用抽水蓄能与火电联产的当日阶段(IS)调整调度计划;利用实时阶段(RTS)储能电池的快速响应特性,平滑实时风能和太阳能场景的偏差。仿真结果验证了该模型的合理性和运行策略的可行性,表明多阶段调度和储能的协同效应有效地减少了实时性与申报量之间的偏差,从而提高了经济效益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhancing virtual power plant efficiency: three-stage optimization with energy storage integration

This study presents a three-stage scheduling optimization model for Virtual Power Plants (VPPs) that integrates energy storage systems to enhance operational efficiency and economic viability. The model addresses the challenges posed by the increasing integration of distributed renewable energy sources, such as wind and solar power, which often lead to fluctuations in power generation and grid instability. By employing a systematic approach, the model establishes a framework for day-ahead, intraday, and real-time scheduling, considering the response speed and timing of different energy storage devices. It uses comprehensive wind and solar power forecasts to formulate the declared output plan in the Day-Ahead Stage (DAS), adjusts scheduling plans in the Intraday Stage (IS) with pumped storage combined with thermal power plants, and employs the rapid response characteristics of energy storage batteries in the Real-Time Stage (RTS) to smooth deviations in real-time wind and solar scenarios. Simulations verify the model’s rationality and the feasibility of its operational strategy, demonstrating that multi-stage scheduling and the synergistic effect of energy storage effectively reduce deviations between real-time and declared outputs, thereby improving economic benefits.

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来源期刊
Energy Informatics
Energy Informatics Computer Science-Computer Networks and Communications
CiteScore
5.50
自引率
0.00%
发文量
34
审稿时长
5 weeks
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