Hydrogen-powered smart grid resilience

Jiayi Han, Jianxiao Wang, Zhihao He, Qi An, Yiyang Song, Asad Mujeeb, Chin-Woo Tan, Feng Gao
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引用次数: 1

Abstract

With an increasing frequency of natural disasters and security attacks, the safe and stable operation of smart grid has been challenged unprecedently. To reduce the economic loss and social impact caused by power outage accidents, it is urgent to develop and improve the smart grid technology, and strengthen the disaster resistance and recovery capability of smart grids when faced with extreme events. As an efficient and flexible secondary energy source, hydrogen is crucial in improving the resilience of smart grid and supporting energy security. To further promote the deep integration of hydrogen systems and smart grid and improve the energy system resilience, the resilience of smart grids supported by hydrogen is assessed in this study. First, a technical framework of hydrogen-powered smart grid resilience is established, and the value of hydrogen-powered smart grid resilience is analysed considering different time frames (before, during and after an extreme event) of smart grids facing extreme events. Then, hydrogen-powered smart grid resilience is investigated from perspectives of pre-prevention regulation, in-process correction regulation, and post-recovery regulation. Finally, future direction for hydrogen-powered smart grid resilience is investigated and related policy suggestions are provided.

Abstract Image

氢动力智能电网弹性
随着自然灾害和安全攻击的日益频繁,智能电网的安全稳定运行受到了前所未有的挑战。为了减少停电事故造成的经济损失和社会影响,迫切需要开发和改进智能电网技术,增强智能电网在面临极端事件时的抗灾和恢复能力。氢作为一种高效、灵活的二次能源,对提高智能电网的弹性和支持能源安全至关重要。为了进一步推动氢能系统与智能电网的深度融合,提高能源系统的弹性,本研究对氢能支持的智能电网的弹性进行了评估。首先,建立了氢动力智能电网弹性的技术框架,并考虑到智能电网面临极端事件的不同时间框架(极端事件之前、期间和之后),分析了氢动力智慧电网弹性的价值。然后,从预防前监管、过程中纠正监管和恢复后监管的角度研究了氢动力智能电网的弹性。最后,对氢能智能电网弹性的未来方向进行了研究,并提出了相关的政策建议。
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