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Wide Design Range of Constant Output Current Using Double-Sided LC Compensation Circuits for Inductive-Power-Transfer Applications

机译:使用双面 LC 补偿电路的宽输出范围的恒定输出电流,用于感应功率传输应用

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摘要

Inductive-power-transfer (IPT) converters should desirably achieve nearly zero reactive circulating power, soft switching of power devices and load-independent constant output voltage or current with optimized transfer efficiency, and lowest component ratings. However, the load-independent output characteristic is dependent on IPT transformer parameters and their compensation. The space-constrained IPT transformer restricts the design of the low-order resonant circuit compensated IPT converter, making the IPT converter hard to optimize. This paper will analyze conditions under which any extra design freedom can be allowed for a double-sided LC compensation circuit in order to achieve load-independent output and zero reactive power input. A detailed analysis is given for the double-sided LC compensation achieving zero reactive power input and constant current output, without being constrained by the transformer parameters. Design conditions of the compensation circuit parameters for achieving these two properties are derived. A complementary LC-CC compensated IPT converter is further proposed to extend the output current amplitude limitation of the double-sided LC compensated IPT converter. Finally, the prototypes of the IPT converters are constructed to verify the design flexibility of the proposed double-sided LC compensation circuit for achieving the multiple objectives.
机译:理想的是,感应功率传输(IPT)转换器应具有接近零的无功循环功率,功率器件的软开关以及与负载无关的恒定输出电压或电流,并具有最佳的传输效率和最低的组件额定值。但是,与负载无关的输出特性取决于IPT变压器参数及其补偿。空间受限的IPT变压器限制了低阶谐振电路补偿IPT转换器的设计,使IPT转换器难以优化。本文将分析在这样的条件下,可以为双面LC补偿电路提供任何额外的设计自由度,以实现与负载无关的输出和零无功功率输入。给出了针对双侧LC补偿的详细分析,该补偿可实现零无功功率输入和恒定电流输出,而不受变压器参数的限制。得出用于实现这两个特性的补偿电路参数的设计条件。进一步提出了一种互补的LC-CC补偿IPT转换器,以扩展双面LC补偿IPT转换器的输出电流幅度限制。最后,构建IPT转换器的原型来验证所提出的双面LC补偿电路在实现多个目标方面的设计灵活性。

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