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A Novel Decoupled Current-Sharing Scheme Based on Circulating-Impedance in Parallel multi-Inverter System

机译:基于并联多变频器系统循环阻抗的新型解耦电流共享方案

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Parallel multi-inverter systems can be designed to have the advantages of expandable output power, improved reliability, and easy N+X redundancy operation. However, a current-sharing control scheme has to be employed to enable the inverters to share the load current equally. The concept of circulating impedance is proposed in the paper, and introduced into current-sharing control scheme in parallel multi-inverter systems. The mathematical model of circulating impedance is set up. By introducing circulating-impedance control regulator, the characteristic of circulating-impedance is controlled to be similar to that of the pure resistance or inductance. Then the relationship between the circulating-current phasor and the amplitude, the phase of inverter module's output voltage reference is decoupled. Experimental 220Vac/3KVA inverter modules are built and parallel operated. The results of experiment verify that the current-sharing scheme based on circulating impedance is available and efficient.
机译:并联多变频器系统可以设计成具有可扩展的输出功率,提高可靠性和简单的N + X冗余操作的优点。然而,必须采用电流共享控制方案来使得逆变器能够平等地共享负载电流。在纸上提出了循环阻抗的概念,并在并行多变频器系统中引入了电流共享控制方案。建立了循环阻抗的数学模型。通过引入循环阻抗控制调节器,控制循环阻抗的特性与纯电阻或电感类似。然后,循环电流相位器与幅度之间的关系,逆变器模块的输出电压参考的相位被解耦。实验220VAC / 3KVA逆变器模块是建造和平行的操作。实验结果验证了基于循环阻抗的当前共享方案可用,高效。

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