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Energy management and operational control methods for grid battery energy storage systems

机译:电网电池储能系统的能源管理和运行控制方法

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摘要

Energy storage is one of the key means for improving the flexibility, economy and security of power system. It is also important in promoting new energy consumption and the energy Internet. Therefore, energy storage is expected to support distributed power and the micro-grid, promote open sharing and flexible trading of energy production and consumption, and realize multi-functional coordination. In recent years, with the rapid development of the battery energy storage industry, its technology has shown the characteristics and trends for large-scale integration and distributed applications with multi-objective collaboration. As a grid-level application, energy management systems (EMS) of a battery energy storage system (BESS) were deployed in real time at utility control centers as an important component of power grid management. Based on the analysis of the development status of a BESS, this paper introduced application scenarios, such as reduction of power output fluctuations, agreement to the output plan at the renewable energy generation side, power grid frequency adjustment, power flow optimization at the power transmission side, and a distributed and mobile energy storage system at the power distribution side. The studies and application status of a BESS in recent years were reviewed. The energy management, operation control methods, and application scenes of large-scale BESSs were also examined in the study.
机译:能量存储是提高电力系统的灵活性,经济性和安全性的关键手段之一。在促进新能源消费和能源互联网方面也很重要。因此,能量存储预计支持分布式电力和微电网,促进开放式共享和灵活的能源生产和消费交易,并实现多功能协调。近年来,随着电池储能行业的快速发展,其技术表明了具有多目标协作的大规模集成和分布式应用的特点和趋势。作为电网级应用,电池储能系统(BESS)的能量管理系统(EMS)在公用事业控制中心实时部署,作为电网管理的重要组成部分。基于分析BESS的开发地位,本文介绍了应用场景,如减少电源输出波动,协议在可再生能源生成侧,电网频率调整,电网频率调整,电力传输电流优化。侧面,以及配电侧的分布式和移动能量存储系统。近年来百思的研究和应用现状进行了综述。在研究中还检查了大型贝丝的能量管理,操作控制方法和应用场景。

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