Research on improved current droop control scheme of energy storage converter

Yifan Hao, Kunli Guo, Fengyi Liu, Jiajun Lv, Bo Li, Peihao Yang
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Abstract

The droop control scheme is adopted in the energy storage converter to improve the voltage and frequency support capability of the energy storage converter to the regional power grid. The droop control strategy of active current frequency and reactive current voltage is specifically adopted. Aiming at the problem that the traditional current droop control can not suppress the grid side fluctuation, which leads to the poor transient characteristics of the output voltage of the energy storage converter, a method to characterize the droop coefficient according to the change rate of the effective value of the output voltage of the energy storage converter is proposed, and the droop coefficient is adaptively adjusted according to the voltage regulation to provide virtual inertial support for the system. Simulation is used to verify the proposed scheme. The results show that the new current droop control strategy can effectively improve the transient voltage performance of the energy storage converter.
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储能变换器改进电流下垂控制方案的研究
储能变换器采用下垂控制方案,提高了储能变换器对区域电网的电压和频率支持能力。具体采用了有功电流频率与无功电流电压的下垂控制策略。针对传统的电流下垂控制不能抑制电网侧波动,导致储能变换器输出电压暂态特性差的问题,提出了一种根据储能变换器输出电压有效值变化率来表征下垂系数的方法。并根据电压调节自适应调整下垂系数,为系统提供虚拟惯性支撑。通过仿真验证了该方案的有效性。结果表明,新的电流下垂控制策略可以有效地改善储能变换器的暂态电压性能。
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