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Renewable Energy Intermittency Mitigation in Microgrids: State-of-the-Art and Future Prospects

机译:微电网的可再生能量间歇性缓解:最先进的和未来的前景

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The use of Renewable Energy Sources (RES) in Microgrids (MG) for power generation is a much-proposed countermeasure against the environmental degradation caused by burning of fossil fuels. However, RES are intermittent in nature and the power generated by them fluctuates randomly, due to which, appropriate measures are needed to ensure an efficient and reliable power supply. This paper reviews the state-of-the-art techniques used to mitigate the intermittency of RES in MG. A new classification of intermittency mitigation techniques is presented and a comparison of these techniques is drawn. Based on the reviewed literature, some important research directions to improve the existing intermittency mitigation techniques are proposed. Among these directions, the need to investigate RES complementarity further by characterizing RES, minimization of the cost of energy storage systems (ESS) and development of algorithms for better integration, management and control of ESS and dispatchable generators have been identified as crucial challenges in mitigating the intermittency of RES in MG. In addition, the standardization of communication protocols to ensure interoperability of communicating elements of MG and the use of fast, reliable communication links have been realized as fundamental requirements for a MG to be able to mitigate intermittency through appropriate techniques, such as, energy cooperation between MG and demand response management.
机译:在微电网(MG)中使用可再生能源(RES)对于发电是一种巨大提议的对抗化石燃料引起的环境降解的对策。然而,RES本质上间歇性,并且它们产生的功率随机波动,因为需要采取适当的措施来确保有效且可靠的电源。本文综述了最先进的技术,用于减轻MG中RES的间歇性。提出了一种新的间歇性缓解技术的分类,并绘制了这些技术的比较。基于综述文献,提出了改进现有间歇性减缓技术的一些重要研究方向。在这些方向中,通过表征RES,最小化能量存储系统(ESS)的成本以及用于更好地集成,管理和控制和调度发电机的算法的算法,最小化互补性的需要已经被识别为缓解的关键挑战镁镁的间歇性。此外,通信协议的标准化,以确保通信MG的元素和使用快速可靠的通信链路的互操作性已被实现为MG的基本要求,以便能够通过适当的技术缓解间歇性,例如,在MG和需求响应管理。

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