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DC-Bus hybrid energy storage devices cooperation control strategy for stand-alone inverter under imbalance load

机译:不平衡负载下单机逆变器的DC-Bus混合动力储能装置协同控制策略

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In a small capacity low voltage renewable energy source (RES) distribution network, there are the increased likelihood of significant load imbalance between phases and the inevitable inherent intermittency in RES. Under this condition, for a stand-alone voltage-source inverter, appropriated inverter strategy would suppress negative-sequence voltage. However the DC-Bus ripple voltage could be observed. Thus even harmonic and odd harmonic voltages in DC-Bus and AC-Bus can be introduced, respectively, and the power qualify is deteriorated subsequently. In this paper, a hybrid energy storage devices (ESD) cooperation control strategy for eliminating the amplitude of DC-Bus ripple voltage is proposed. Based on system model, the expression of DC-Bus ripple voltage is deduced. Additional, a notch filter based on Goertzel algorithms is adapted to realize hybrid ESDs reference signal extracting. Moreover, a ripple voltage feedforward control loop is placed in ultracapacitor (UC) ESD to eliminate DC-Bus voltage ripple. The design approach of the control strategy is discussed in detail. The feasibility and effectiveness of the control strategy are validated by simulation and experimental results.
机译:在小容量低压可再生能源(RES)配电网络中,各相之间出现明显的负载失衡的可能性增加,并且RES中不可避免的固有间歇性增加。在这种情况下,对于独立的电压源逆变器,采用适当的逆变器策略可以抑制负序电压。但是,可以观察到DC-Bus纹波电压。因此,可以分别在DC-Bus和AC-Bus中引入偶数谐波和奇数谐波电压,并且随后使功率合格性降低。本文提出了一种用于消除直流母线纹波电压幅度的混合能量存储设备(ESD)协同控制策略。基于系统模型,推导了直流母线纹波电压的表达式。另外,基于Goertzel算法的陷波滤波器适用于实现混合ESD参考信号提取。此外,在超级电容器(UC)ESD中放置了一个纹波电压前馈控制环路,以消除DC-Bus电压纹波。详细讨论了控制策略的设计方法。仿真和实验结果验证了该控制策略的可行性和有效性。

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