Coordinated planning of source-grid-load-storage power system to promote large-scale renewable energy consumption

Bin Che, Zelong Zhang, Dongni Wei, Panlong Jin, Yan Yang
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引用次数: 2

Abstract

With the increase of wind and solar power plants, the uncertainty of their output also brings challenges to the power system. These factors should also be considered in long-term planning of the power system. Therefore, a source-grid-load-storage power system coordinated expansion planning model that considers demand response services is proposed in this paper. In this way, the ability to absorb large-scale renewable energy such as light and wind in the power system is improved. First, the power system operation model is proposed in this paper; secondly, the demand response services and electricity storage facility are modeled in detail; then demand response and electricity storage facility resources are used to alleviate the intermittent output of wind and solar power plants on the power side. A load-side demand response service planning model is proposed, and a source-network-load coordination planning model is proposed. Finally, the rationality of the model is verified through the analysis of simulation examples, and the advantages of the coordinated planning of source-grid-load-storage power system are proved. In addition, it can effectively guarantee the safety of power system operation and improve the absorption capacity of wind and light energy.
统筹规划源-网-荷-蓄电力系统,促进可再生能源大规模消纳
随着风能和太阳能电站的增加,其输出的不确定性也给电力系统带来了挑战。在电力系统的长期规划中也应考虑这些因素。为此,本文提出了考虑需求响应服务的源网-负荷-蓄电系统协同扩容规划模型。通过这种方式,提高了电力系统对光、风等大规模可再生能源的吸收能力。首先,本文提出了电力系统运行模型;其次,对需求响应服务和电力存储设施进行了详细的建模;然后利用需求响应和蓄电设施资源来缓解电力侧风电和太阳能电站的间歇性输出。提出了负荷侧需求响应服务规划模型和源网负荷协调规划模型。最后,通过仿真算例分析验证了模型的合理性,证明了源-网-荷-蓄电力系统协同规划的优越性。此外,它可以有效地保证电力系统运行的安全,提高风能和光能的吸收能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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