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Generalized Average Modeling of a Single-Stage Resonant-Based Inverter

机译:单相谐振逆变器的广义平均建模

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This paper presents an accurate full-order continuous-time average model for a resonant-based inverter with variable switching frequency and phase shift control. A single-stage series-resonant dual active half bridge (SR-DAHB) inverter with combined phase shift and frequency modulation is studied. Four state variables are taken into account; resonant inductor current, resonant capacitor voltage, output filter capacitor voltage, and inverter’s filter inductor current. Since the ripples in the state variables are not small, the dc and first terms of the Fourier series are used to represent the average of the state variables more accurately. In addition, the small signal transfer function of the control-to-output has been derived to design a closed-loop current regulator. Finally, a hybrid control architecture is proposed based on the large and small-signal models. Simulation and experimental results on a 1kV, 50kW SR-DAHB inverter prototype validate the accuracy of the proposed full-order state-space model.
机译:本文针对具有可变开关频率和相移控制的基于谐振的逆变器,提出了一种精确的全阶连续时间平均模型。研究了相移和调频相结合的单级串联谐振双有源半桥(SR-DAHB)逆变器。考虑了四个状态变量。谐振电感器电流,谐振电容器电压,输出滤波电容器电压和逆变器的滤波电感器电流。由于状态变量中的波动不小,因此使用傅立叶级数的dc和第一项来更准确地表示状态变量的平均值。此外,还导出了控制输出的小信号传递函数,以设计闭环电流调节器。最后,提出了一种基于大信号模型和小信号模型的混合控制架构。在1kV,50kW SR-DAHB逆变器原型上的仿真和实验结果验证了所提出的全阶状态空间模型的准确性。

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