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Seamless Transfer of Single-Phase Grid-Interactive Inverters Between Grid-Connected and Stand-Alone Modes

机译:单相并网逆变器在并网和独立模式之间的无缝转换

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摘要

This paper presents a novel seamless transfer of single-phase grid-interactive inverters between grid-connected and stand-alone modes. The grid-connected inverter should operate in grid-tied and off-grid modes in order to provide power to the emergency load during system outages. However, the grid current controller and the output voltage controller are switched between the two modes, so the outputs of both controllers may not be equal during the transfer instant, which will cause the current or voltage spikes during the switching process. The transfer between the two controllers does not exist in the proposed method. In grid-tied mode, the voltage controller is used for compensating the filter capacitor current, and the current controller is used to control the grid current. In stand-alone mode, the voltage controller is used to regulate the output voltage, whereas the output of the current controller is zero. With the proposed control method, the seamless transfer can be achieved between both modes, even in polluted grid voltage. The principle and realization conditions of the control methods at both modes are analyzed. The detailed process of the seamless transfer between the two modes is illustrated. Finally, the simulation and experimental results verify the theoretical analysis.
机译:本文提出了一种新颖的单相并网逆变器在并网和独立模式之间无缝转换的方法。并网逆变器应在并网和离网模式下运行,以便在系统中断时为紧急负载供电。但是,电网电流控制器和输出电压控制器在两种模式之间切换,因此在传输瞬间两个控制器的输出可能不相等,这将在切换过程中引起电流或电压尖峰。所提出的方法中不存在两个控制器之间的转移。在并网模式下,电压控制器用于补偿滤波电容器电流,电流控制器用于控制电网电流。在独立模式下,电压控制器用于调节输出电压,而电流控制器的输出为零。利用所提出的控制方法,即使在污染的电网电压下,也可以在两种模式之间实现无缝转换。分析了两种模式下控制方法的原理和实现条件。说明了两种模式之间的无缝传输的详细过程。最后,仿真和实验结果验证了理论分析。

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