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Modeling and control strategy of battery energy storage system for primary frequency regulation

机译:一次调频电池储能系统的建模与控制策略

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With large-scale integration of high penetration wind power, insufficient capacity problem of frequency regulation is getting increasingly prominent. Energy storage, with quick response characteristics, can meet the stability and reliability requirements of the grid when acted as a frequency regulation auxiliary means. First, based on the regional power grid and traditional generations' frequency regulation characteristics, the necessity for battery energy storage system (BESS) to participate in primary frequency regulation (PFR) was analyzed. Second, a BESS model applicable to primary frequency regulation simulation was built, and then sensitivity analysis for related key factors was conducted. On this basis, BESS participated in primary frequency regulation via using traditional droop control. And due to its inherent technical characteristics (energy restriction), this paper discussed three variable droop control strategies considering the state of charge (SOC) constraint, compared with the traditional fixed droop control strategy and thus summarized the applicable scenarios for these strategies. Finally, simulation verified the validity and reasonableness of the proposed strategies.
机译:随着高渗透风电的大规模集成,频率调节的容量问题不足越来越突出。具有快速响应特性的能量存储可以满足电网的稳定性和可靠性要求,当频率调节辅助装置时。首先,基于区域电网和传统的世代的频率调节特性,分析了电池储能系统(BESS)参与初级频率调节(PFR)的必要性。其次,建立了适用于初级频率调节模拟的BESS模型,然后进行了相关关键因素的灵敏度分析。在此基础上,BESS通过使用传统的下垂控制参与初级频率调节。由于其固有的技术特征(能源限制),本文讨论了三种可变的下垂控制策略,考虑到COUNT(SOC)约束,与传统的固定下垂控制策略相比,总结了这些策略的适用情景。最后,仿真验证了拟议策略的有效性和合理性。

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