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Investigation on grid-scale BESS providing inertial response support

机译:提供惯性响应支持的网格尺度BESS的研究

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The importance of Energy Storages System (ESS) without a doubt is started to compete for the importance of Renewable Energy System (RES) nowadays and in the near future. ESS such as grid-scale batteries has the advantage of storing energy and provides many other services and functionalities to the power system. This paper investigates the effect of installing Battery Energy Storage System (BESS) on grid level transmission system to support fast Inertial Frequency Response (IR). Details of the BESS modeling are presented in this paper. The main contribution is to demonstrate that inertial response provided by BESS can create change to the Rate of Change of Frequency (ROCOF), providing frequency support and improving the system frequency response. A simple test system is used to investigate the effect of the inertial controller in BESS to support the system frequency response. Many time domain simulation tests using DIgSILENT PowerFactory are carried out to evaluate the effect of installing BESS with inertial response enabled. The time-domain simulations are conducted to demonstrate the system frequency responses considering: (i) gain of the inertial controller (ii) different sizes of disturbances, (iii) system robustness.
机译:毫无疑问,如今和不久的将来,储能系统(ESS)的重要性开始争夺可再生能源系统(RES)的重要性。诸如网格规模电池之类的ESS具有存储能量的优势,并为电力系统提供了许多其他服务和功能。本文研究了在电网级传输系统上安装电池储能系统(BESS)以支持快速惯性频率响应(IR)的效果。本文介绍了BESS建模的详细信息。主要贡献在于证明BESS提供的惯性响应可以改变频率变化率(ROCOF),提供频率支持并改善系统频率响应。一个简单的测试系统用于研究BESS中惯性控制器的效果,以支持系统频率响应。使用DIgSILENT PowerFactory进行了许多时域仿真测试,以评估在启用惯性响应的情况下安装BESS的效果。进行时域仿真是为了考虑以下因素来演示系统频率响应:(i)惯性控制器的增益(ii)不同大小的干扰,(iii)系统鲁棒性。

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