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含混合电解槽的绿电-绿氢系统能量管理策略研究
RESEARCH ON ENERGY MANAGEMENT STRATEGY OF GREEN ELECTRICITY-GREEN HYDROGEN SYSTEM WITH MIXED ELECTROLYZER
【摘要】 提出绿电-绿氢一体化能量管理策略,以实现多时间尺度下系统协调稳定运行。基于层次分析法和熵权法计算碱性电解槽(AEL)和质子交换膜电解槽(PEMEL)混合电解槽最优容量配比方案,以期提升绿氢系统的承载能力。考虑AEL和PEMEL工作特性建立包含风电-制氢-储氢单元的精细化仿真模型,采用分层控制方法提高系统协调运行能力,同时提出余电制氢、负荷功率补偿及源荷协调运行等7种复杂工况能量管理策略,促进风电资源的高效利用,有效改善绿电-绿氢一体化系统的功率平衡关系。
【Abstract】 This paper proposes an integrated energy management strategy of green electric-green hydrogen to achieve coordinated and stable operation of the system under multiple time scales. Based on analytic hierarchy process(AHP) and entropy weight method, the optimal capacity ratio scheme of alkaline electrolzser(AEL) and proton exchange membrane electrolyzer(PEMEL) was calculated to improve the carrying capacity of green hydrogen system. Considering the working characteristics of AEL and PEMEL, a refined simulation model is established that includes wind power hydrogen production hydrogen storage units. A hierarchical control method is adopted to improve the coordinated operation ability of the system. At the same time, nine complex energy management strategies are proposed, including residual electricity hydrogen production, load power compensation, and source load coordinated operation, to promote the efficient utilization of wind power resources and effectively improve the power balance relationship of the green power green hydrogen integrated system.
【Key words】 clean energy; hydrogen energy; energy management; green electricity green hydrogen; analytic hierarchy process; entropy weight method; mixed electrolytic cell;
- 【文献出处】 太阳能学报 ,Acta Energiae Solaris Sinica , 编辑部邮箱 ,2025年01期
- 【分类号】TK91;TM614
- 【下载频次】252