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State Trajectory Control of Startup for LCC Resonant Converters With Capacitive Output Filter

机译:具有电容输出滤波器的LCC谐振转换器启动状态轨迹控制

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摘要

LCC resonant converters have been widely adopted in pulse-modulated high-voltage generators to achieve high power density and high efficiency, which require a short rising time of output voltage. However, if the LCC resonant converter starts up too fast, the voltage and/or current stresses of the resonant tank during startup may be several times higher than those of the steady state due to the complex dynamic behavior of the resonant tank. In this article, a simplified state model of LCC resonant converters is first introduced. Then, optimal state trajectory control (OTC) is proposed to optimize the startup performance of LCC converters. Besides, to combine the advantages of OTC in the startup and power integrity (PI) control in the steady state, hybrid control is adopted. Finally, an LCC resonant converter prototype is constructed to verify the proposed OTC, which achieves a minimal rising time of output voltage with no additional current and/or voltage stresses in the resonant tank during startup compared to the conventional control.
机译:LCC谐振转换器已广泛采用脉冲调制的高压发电机,以实现高功率密度和高效率,需要较短的输出电压时间。然而,如果LCC谐振转换器太快,则启动期间的谐振槽的电压和/或电流应力可能是由于谐振槽的复杂动态行为而高于稳态的倍数。在本文中,首先介绍LCC谐振转换器的简化状态模型。然后,提出了最佳状态轨迹控制(OTC)以优化LCC转换器的启动性能。此外,为了将OTC在稳定状态下的启动和电源完整性(PI)控制中结合,采用混合控制。最后,构建了LCC谐振转换器原型以验证所提出的OTC,其在启动期间实现了输出电压的最小上升时间,并且与传统控制相比,在启动期间没有谐振槽中的额外电流和/或电压应力。

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