Research on the Key Technologies of Battery Energy Storage Power Station for Plug and Play Operation

Anping Hu, Guanjun Li, Ting Yang, Liang Zhang, Henghua Shui, Chen Fang
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引用次数: 1

Abstract

Plug and play (PNP) technology of Battery Energy Storage Power Station (BESPS) based on the emergency support and scale application background of battery energy storage is presented in this paper, and the key to the PNP technology is fully studied. Firstly, PNP technology of BESPS is divided into two dimensions: energy flow level to achieve ‘plug’ goal and information flow level to achieve ‘play’ goal. Then, advanced applications in energy flow level are given, which include conversion control between grid-connected and off-grid, active voltage and frequency support, load peak shifting. The basic principles of establishing BESPS grid-connected communication model and communication mechanism based on information flow are first proposed. The communication interaction method with the example of between Control Center of Power Station (PSCC) and Power Dispatching Center (PDC) is analyzed. the compatibility of BESPS can be improved by researching the basic ways of device interface interoperability, which includes two parts: battery to Energy Storage Unit (ESU), ESU to BESPS. Finally, the BESPS operating between various operation modes are verified by simulation. The research work in this paper has a very positive guiding significance and reference value for the development of enhanced BESPS and solving the problems of large-scale and flexible grid connection of BESPS.
即插即用型电池储能电站关键技术研究
提出了基于电池储能应急保障和规模化应用背景的电池储能电站(BESPS)即插即用(PNP)技术,并对该技术的关键进行了全面研究。首先,将BESPS的PNP技术分为两个维度:实现“插”目标的能量流层面和实现“玩”目标的信息流层面。在此基础上,提出了并网与离网转换控制、有源电压与频率支持、负荷移峰等在能量流水平上的应用。首先提出了建立BESPS并网通信模型的基本原则和基于信息流的通信机制。以电站控制中心(PSCC)与电力调度中心(PDC)为例,分析了通信交互方法。通过研究设备接口互操作的基本方法,提高BESPS的兼容性,包括电池到储能单元(ESU)和储能单元到BESPS两部分。最后,通过仿真验证了BESPS在不同工作模式下的运行效果。本文的研究工作对发展增强型BESPS,解决BESPS大规模柔性并网问题具有十分积极的指导意义和参考价值。
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