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A novel seamless transfer control strategy for wide range load

机译:一种适用于大范围负载的新型无缝传输控制策略

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This paper proposes a novel seamless transfer control strategy of three-phase grid-connected inverter between grid-connected (GC) and stand-alone (SA) modes which can cover from no load to full load, even in non linear (NL) loads. The three-phase grid-connected inverter which uses in distributed generation (DG) system can be operated in both GC and SA control modes, especially for energy storage systems. The current and the voltage is controlled by the inverter in GC and SA mode respectively. In other words, the control methods are differently applied to each mode. When the grid outage, the inverter changes its operation mode. During the mode transition from GC to SA, undesired phenomena such as a voltage spike and a current spike are occurred. With the proposed method, the seamless transfer can be achieved. In addition, proposed algorithm is considered the non detection zone (NDZ) condition which the inverter cannot recognize changes such as magnitude and frequency variation of critical load. The proposed control method is verified by the experimental results.
机译:本文提出了一种新颖的三相并网逆变器在并网(GC)模式和独立(SA)模式之间的无缝转移控制策略,即使在非线性(NL)负载下也可以覆盖从空载到满载的情况。分布式发电(DG)系统中使用的三相并网逆变器可以在GC和SA控制模式下运行,尤其是对于储能系统。电流和电压分别由处于GC和SA模式的逆变器控制。换句话说,控制方法被不同地应用于每种模式。当电网中断时,逆变器会更改其运行模式。在从GC到SA的模式转换过程中,会发生不良现象,例如电压尖峰和电流尖峰。利用所提出的方法,可以实现无缝转移。另外,所提出的算法被认为是非检测区(NDZ)条件,逆变器无法识别出诸如临界负载的幅度和频率变化之类的变化。实验结果验证了所提出的控制方法。

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