Medium-Term and Long-Term Optimal Scheduling for Community Integrated Energy System with High Proportion of Renewable Energy and Multi-type Energy Storage

Sen Wang, Y. Qi, Ke Xu, Dengxin Ai, Li Zhang, Hong Liu
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Abstract

response to the problems that the existing studies have not fully considered the role of hydrogen storage in the longtime and large-scale new energy consumption and the existing energy systems containing hydrogen storage have not fully considered the severe weather conditions in the scheduling, a medium-term and long-term optimal scheduling for community integrated energy system with high proportion of renewable energy and multi-type energy storage is proposed. Firstly, a typical day selection method and a typical day sequence formation method are proposed based on the traditional multi-scenario method and the year-round weather conditions; secondly, a medium-term and long-term operation state description method for hydrogen energy storage considering the internal characteristics of typical days and the external arrangement sequence of typical days is proposed; again, the architecture of the integrated energy system containing hydrogen and thermal energy storage is introduced. Based on the internal characteristics of a typical day and the external linkage of a typical day, a medium-term and long-term optimal scheduling model and solution method for the community integrated energy system with high proportion of renewable energy and multi-type energy storage are proposed. Finally, the effectiveness and practicality of the proposed method are verified through the analysis of calculation cases.
高比例可再生能源和多类型储能的社区综合能源系统中长期优化调度
针对现有研究未充分考虑储氢在长期、大规模新能源消费中的作用以及现有含储氢能源系统在调度中未充分考虑恶劣天气条件的问题,提出了可再生能源占比高、储能类型多的社区综合能源系统中长期优化调度方案。首先,在传统多场景方法和全年天气条件的基础上,提出了典型日选择方法和典型日序列形成方法;其次,提出了考虑典型日内部特征和典型日外部排列顺序的氢储能中长期运行状态描述方法;再次,介绍了蓄氢蓄热一体化能源系统的结构。基于典型日的内部特征和典型日的外部联系,提出了可再生能源占比高、储能类型多的社区综合能源系统中长期优化调度模型和求解方法。最后,通过算例分析验证了所提方法的有效性和实用性。
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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