针对可再生能源大规模集成的电力系统,提出了一种多组蓄电池储能系统负荷频率控制的新方法

A. Hashimoto, A. Yokoyama
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引用次数: 7

摘要

由于光伏发电和风力发电等可再生能源发电机组的输出是间歇性的,因此将其大规模集成到电力系统中会导致较大的频率波动。电池储能系统(BESS)被认为是解决这一问题的一种方法。在bess的运行中,应考虑其特点。例如,为了延长BESS的寿命,其荷电状态(SOC)不应达到上限或下限。此外,当BESS逆变器的输出较低时,其效率会降低。本文针对多台bess和不同类型bess并网的情况,提出了一种考虑其特性的bess负荷频率控制新方法。对多机电力系统模型进行了数值仿真,验证了所提控制方法的有效性。很明显,它们的逆变器总损耗可以降低,所有SOC都可以始终保持在限制范围内,同时有助于通过所提出的方法进行频率控制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A new control method of multiple sets of battery energy storage system for load frequency control in power system with massive integration of renewable energy resources
Massive integration of generations from renewable energy sources such as photovoltaic (PV) and wind power generations into power systems causes large frequency fluctuations because their outputs are intermittent in nature. Battery energy storage system (BESS) is considered as one of solutions to this problem. In operation of the BESSs, their characteristics should be taken into consideration. For example, to extend the life time of the BESS, its state of charge (SOC) should not reach the upper or lower limit. In addition, efficiency of the BESS inverter is degraded when its output is low. In this paper, when multiple sets of BESSs and different kinds of BESSs are installed into a power grid, a new control method of the BESSs for load frequency control taking into account their characteristics is proposed. Numerical simulations for the multi-machine power system model are carried out to show effectiveness of the proposed control method. It is made clear that their total inverter loss can be reduced and all of their SOC can be always kept within the limits while contributing to the frequency control by the proposed method.
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