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Modeling and control of grid-connected DC/AC converters for single-phase micro-inverter application

机译:单相微逆变器应用的并网DC / AC转换器的建模和控制

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This paper presents modeling and control for a single-phase grid-connected two-stage micro-inverter system. An average signal model has been developed for a single-phase bridge inverter. The proposed controller has three cascaded control loops. The inner current loop consists of a variable frequency hysteric current mode control which regulates output filter inductor current thereby improved system response. The small signal modeling of the proposed control method is discussed. Again, as the dc-link capacitor plays a crucial role in two-stage micro inverter applications, a DC-link voltage controller is employed in outer control loop to keep the bus voltage constant. The grid current loop regulates the injected current to the grid at a reduced THD level. The stability of the above control loops are also verified by using Bode-diagram. Finally the proposed method is then applied to 500 Watts, 110V, 50Hz, two- stage single-phase grid-connected Photo-voltaic (PV) system. The simulation and the experimental results are presented to validate the theoretical analysis, effectiveness and feasibility of the proposed control strategy.
机译:本文介绍了单相并网两级微逆变器系统的建模和控制。已经为单相桥式逆变器开发了平均信号模型。所提出的控制器具有三个级联控制回路。内部电流环路由一个可变频率的磁滞电流模式控制组成,该模式可调节输出滤波器电感器电流,从而改善系统响应。讨论了所提出的控制方法的小信号建模。同样,由于直流母线电容器在两级微型逆变器应用中起着至关重要的作用,因此在外部控制环路中采用了直流母线电压控制器来保持总线电压恒定。电网电流环路以降低的总谐波失真水平调节注入电网的电流。上述控制回路的稳定性也通过使用波特图来验证。最后,将所提出的方法应用于500瓦,110V,50Hz的两级单相并网光伏(PV)系统。通过仿真和实验结果验证了所提出控制策略的理论分析,有效性和可行性。

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