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Zero Voltage Switching of a Low-Power IPT System With High-Step Down Voltage Ratio

机译:低功耗IPT系统的零电压切换,具有高台压比率

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A two-stage configuration is attractive for the wireless chargers due to its simple control scheme and high-efficiency operation. This configuration usually consists of a regulation stage and a unregulated inductive power transfer (IPT) stage. The unregulated IPT stage is widely used to simplify the control. This stage is able to offer isolation and voltage level conversion. It is promising to introduce such an IPT stage for off-line charger. However, it is easy to lose the zero voltage switching, especially for high-voltage low-current applications. This paper explores a systematic approach to analyze the ZVS lost mechanism. Numerical method is used to derive the ZVS boundary. The proposed analysis is also valid for any other high-order resonant converters. Finally, a 25-W wireless fast charger is designed with optimal design parameters for ZVS operation.
机译:由于控制方案简单和高效操作,两级配置对无线充电器具有吸引力。该配置通常由调节阶段和一个未管制的电感电力传输(IPT)阶段组成。不受管制的IPT阶段被广泛用于简化控制。该阶段能够提供隔离和电压电平转换。有希望为离线充电器引入这样的IPT阶段。但是,易于丢失零电压切换,特别是对于高压低电流应用。本文探讨了分析ZVS丢失机制的系统方法。数值方法用于导出ZVS边界。所提出的分析对于任何其他高阶谐振转换器也有效。最后,使用25-W无线快速充电器设计,具有ZVS操作的最佳设计参数。

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