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A current control strategy of three-phase grid-connected inverter with LCL filter based on one-cycle control

机译:基于单周期控制的带LCL滤波器的三相并网逆变器电流控制策略

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A digital one-cycle control strategy combined with the Quasi Proportional Resonant (QPR) controller is applied to the three-phase grid-connected inverter with LCL filter in this paper. The control system contains dual loops with inner loop of capacitive current and outer loop of net current. Instead of conventional SPWM modulation method, one-cycle control for the inner loop has functions of control and modulation, and then the bipolar control algorithm of one-cycle controller with capacitor current is derived to improve anti-interference performance of the system and to shorten the tuning process, the QPR controller in stationary reference frame is adopted to the outer-loop, which elides complicated coordinates transformation. Considering the high-order feature of the system, the parameters of controllers are designed by using the high-order poles assignment. Finally, a 3kW three-phase grid-connected inverter simulation is performed and the results verify feasibility of the scheme.
机译:本文将一种结合准比例谐振(QPR)控制器的数字单周期控制策略应用于带LCL滤波器的三相并网逆变器。控制系统包含双回路,双回路具有电容性电流的内环和净电流的外环。代替传统的SPWM调制方法,内环的一周期控制具有控制和调制的功能,然后推导具有电容器电流的一周期控制器的双极控制算法,以提高系统的抗干扰性能并缩短系统周期。在调谐过程中,外环采用固定参考系中的QPR控制器,省去了复杂的坐标变换。考虑到系统的高阶特性,通过使用高阶极点分配来设计控制器的参数。最后,对3kW三相并网逆变器进行了仿真,结果验证了该方案的可行性。

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