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A Robust One-Cycle Controlled Full-Bridge Series-Parallel Resonant Inverter for a High-Frequency AC (HFAC) Distribution System

机译:用于高频交流(HFAC)配电系统的稳健的单周期控制全桥串联并联谐振逆变器

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摘要

Resonant inverters are connected to a high-frequency AC (HFAC) bus, where power is delivered to different locations for points-of-use power management. Such a power distribution system subjects to more perturbations and load uncertainties than inverters operating with single load. A novel voltage control method is proposed in this paper for a high-frequency full-bridge resonant inverter with series-parallel resonant tank. A modified one-cycle controlled phase-shift modulation is proposed to effectively compensate the input line variations. The uncertainty model of the high frequency resonant inverter is developed and analyzed with the resonant circuit component tolerance, input line and load variations taken into design considerations. The voltage feedback controller is designed based on the Hinfin robust control theory and is implemented with analog discrete devices. The proposed control scheme has the advantages of fast response for both input line and load perturbations. It also ensures a wide range of system stability and guarantees robustness of the power converter. Both simulations and experimental results are provided to verify with the theoretical analysis through an experimental prototype of a full-bridge resonant inverter with an output power of 150-W operating at 1 MHz and an output voltage of 28 V (rms).
机译:谐振逆变器连接到高频AC(HFAC)总线,在此总线上将功率传输到不同位置以进行使用点功率管理。与单负载运行的逆变器相比,这样的配电系统受到更多的干扰和负载不确定性。提出了一种新颖的电压控制方法,用于具有串联并联谐振回路的高频全桥谐振逆变器。提出了一种改进的单周期控制相移调制,以有效补偿输入线路的变化。开发并分析了高频谐振逆变器的不确定性模型,并考虑了谐振电路组件的容差,输入线和负载变化。电压反馈控制器是基于Hinfin鲁棒控制理论设计的,并通过模拟分立器件实现。所提出的控制方案具有对输入线路和负载扰动都快速响应的优点。它还可以确保广泛的系统稳定性,并确保功率转换器的坚固性。通过全桥谐振逆变器的实验原型提供了仿真和实验结果,以通过理论分析进行验证,该逆变器的输出功率为150W,工作频率为1MHz,输出电压为28V(rms)。

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