Interactive Method Between Distributed Electric Hydrogen Coupling System and Distribution Network

Caixia Tan, He Wang, Junyao Shen, Leiqi Zhang, Xiaming Ye, Z. Tan, V. S. Kumar
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Abstract

Under the “double-carbon” goal, clean energy production is an important way to achieve the “double-carbon” goal. According to this, the large-scale development of wind power generation and photovoltaic power generation has an impact on the distribution network. How to reduce this impact through the interaction between the distributed electric-hydrogen coupling system and the distribution network has become an important research point. In this paper, the interaction method between distributed electric-hydrogen coupling system and distribution network is studied. Firstly, the influence of renewable energy on distribution network is analyzed qualitatively. Then, the interactive architecture of distributed electric-hydrogen coupling system and distribution network is designed, and two interactive mechanisms of distributed electric-hydrogen coupling system and distribution network, namely peak shaving auxiliary service and electric energy service, are proposed. Finally, an example of a distributed electricity hydrogen coupling system and distribution network is used to verify the effectiveness and rationality of the interaction mechanism.
分布式电氢耦合系统与配电网的交互方法
在“双碳”目标下,清洁能源生产是实现“双碳”目标的重要途径。由此可见,风力发电和光伏发电的大规模发展对配电网产生了影响。如何通过分布式电氢耦合系统与配电网之间的相互作用来减小这种影响已成为一个重要的研究热点。本文研究了分布式电氢耦合系统与配电网的相互作用方法。首先,定性分析了可再生能源对配电网的影响。然后,设计了分布式电氢耦合系统与配电网的交互体系结构,提出了分布式电氢耦合系统与配电网的两种交互机制,即调峰辅助服务和电能服务。最后,以分布式电氢耦合系统与配电网为例,验证了该耦合机制的有效性和合理性。
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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