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Zero-Vector-Injection Based Current Sharing Control of Interleaved Full-Bridge LLC Resonant Converters

机译:基于零矢量喷射的交错全桥LLC谐振转换器的电流共享控制

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摘要

Interleaved LLC resonant converters are widely used in various fields. However, interleaved LLC converters under Pulse Frequency Modulation (PFM) will lose the regulation of individual phases, causing a load sharing problem. Existing load sharing solutions have limitations; for example, phase shedding and current sharing cannot be realized at the same time. This paper proposed a novel current sharing method for interleaved full-bridge LLC resonant converters. Based on Zero-Vector-Injection, the voltage applied to the resonant tank is controlled to compensate for the difference in gain caused by component tolerance. The modulation strategy is proposed to maintain soft switching after Zero-Vector-Injection, and the phase shedding technique is also used to improve the efficiency at a light load. The detailed theoretical analysis and implementation method are proposed and validated using simulations. Experiments are also carried out to verify the feasibility of the proposed strategy based on a 2-phase 1.8 kW prototype.
机译:交错的LLC谐振转换器广泛用于各个领域。然而,在脉冲频率调制(PFM)下的交错LLC转换器将失去各个阶段的调节,导致负载分享问题。现有负载共享解决方案有局限性;例如,不能同时实现阶段脱落和电流共享。本文提出了一种用于交错的全桥LLC谐振转换器的新型电流共用方法。基于零载体喷射,控制施加到谐振槽的电压以补偿由部件公差引起的增益的差异。提出了调制策略以在零载注射后保持软切换,并且相位脱落技术也用于提高光负荷的效率。使用仿真提出和验证了详细的理论分析和实施方法。还进行了实验,以验证基于2阶段1.8 kW原型的提出策略的可行性。

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