彭思敏, 曹云峰, 蔡旭. 大型蓄电池储能系统接入微电网方式及控制策略[J]. 电力系统自动化, 2011, 35(16): 38-43.
引用本文: 彭思敏, 曹云峰, 蔡旭. 大型蓄电池储能系统接入微电网方式及控制策略[J]. 电力系统自动化, 2011, 35(16): 38-43.
PENG Si-min, CAO Yun-feng, CAI Xu. Control of Large Scale Battery Energy Storage System Interface to Microgrid[J]. Automation of Electric Power Systems, 2011, 35(16): 38-43.
Citation: PENG Si-min, CAO Yun-feng, CAI Xu. Control of Large Scale Battery Energy Storage System Interface to Microgrid[J]. Automation of Electric Power Systems, 2011, 35(16): 38-43.

大型蓄电池储能系统接入微电网方式及控制策略

Control of Large Scale Battery Energy Storage System Interface to Microgrid

  • 摘要: 由于风能的波动和负荷的扰动,特别是在孤网运行且风能穿透比较高(或风机停机)时,微电网需要大型储能系统来保证系统电能的稳定性。提出了大型蓄电池储能系统接入的实现形式及其控制策略,分析了蓄电池的特性及功率调节器的工作原理,建立了系统仿真模型,并设计、开发了容量为100kW的实验样机。仿真和实验结果表明,在不同带载情况下,该系统能保证公共供电点(PCC)电压和频率的稳定,谐波含量小,满足供电要求。

     

    Abstract: Due to wind fluctuation and load disturbances,large scale energy storage system is required for maintaining power stability in a microgrid,especially with high penetration of wind power generation or no wind turbines during islanded mode.Huge battery energy storage system(BESS) is composed of lead-acid battery and power conditioning system(PCS).It is integrated into the microgrid.The architecture of the BESS is proposed and a new control method is presented to enable linear/nonlinear load sharing by parallel connected BESS without communication among them.The feature of lead-acid battery is investigated and the operation of PCS is introduced as well.The effectiveness of the BESS and proposed control method is verified through simulations and experiments.

     

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