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Characteristic, Design and Implementation of Double-Sided LC Compensation with Flexible Constant-Current Outputs for Inductive Power Transfer Applications

机译:具有灵敏恒流输出的双向LC补偿的特性,设计和实现,用于感应功率传输应用

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Compensation is indispensable in inductive-power-transfer (IPT) converters, facilitating the characteristics of nearly zero reactive circulating power, soft switching realization and the required load-independent constant-voltage (CV) or constant-current (CC) output to improve the transfer efficiency and decrease the component ratings. However, the load-independent output relies on the IPT parameters greatly. The space-constrained IPT transformer poses a limitation on the design of the IPT converter transfer function and makes the IPT converter hard to optimize. This paper will analyze the design freedom of the double-sided LC compensation circuit from the points of load-independent constant output and zero reactive power. A thorough derivation is given for the double-sided LC compensation with CC output not constrained by the transformer parameters. The output CC design boundary is also stated. Then an LC-CC compensation topology is proposed to generate the flexible CC output compensating the output current amplitude limitation of double-sided LC compensation.
机译:补偿在感应功率传输(IPT)转换器中是必不可少的,它具有无功循环功率几乎为零,实现软开关的特性以及所需的独立于负载的恒定电压(CV)或恒定电流(CC)输出以改善功率损耗的特性。转移效率并降低组件的额定值。但是,独立于负载的输出很大程度上取决于IPT参数。空间受限的IPT变压器限制了IPT转换器传递函数的设计,使IPT转换器难以优化。本文将从负载无关的恒定输出和零无功功率的角度分析双面LC补偿电路的设计自由度。全面推导了双面LC补偿,其CC输出不受变压器参数的限制。还说明了输出CC设计边界。然后提出一种LC-CC补偿拓扑结构,以产生灵活的CC输出,以补偿双面LC补偿的输出电流幅度限制。

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