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Design of an IPT Battery Charger with Configurable Constant Current and Constant Voltage Outputs

机译:具有可配置的恒定电流和恒定电压输出的IPT电池充电器的设计

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摘要

The inductive power transfer (IPT) technology has gained a wide acceptance in battery charging applications due to its significant advantages over traditional plug-in systems. It is desirable that an IPT charger can be configured with the initial constant current (CC) and the subsequent constant voltage (CV) outputs as the battery requires, combating constr-aints of the loosely coupled transformer (LCT) parameters without sophisticated control schemes. Meanwhile, a near resistive input impedance and soft switching for the whole battery charging process can be permitted. To meet these requirements, this paper systematically analyzes the characteri-stics of some existing compensation topologies and proposes two hybrid IPT structures to realize the configurable CC and CV outputs in regardless of the constraints of LCT parameters. Due to the different output filters, a hybrid IPT battery charger, actually using the combination of the doublesided LCC and LCC-S compensation circuits, is proposed and implemented in this paper. Finally, an experimental prototype is built to validate the proposed design.
机译:感应功率传输(IPT)技术由于其相对于传统插入式系统的显着优势而在电池充电应用中获得了广泛认可。理想的是,IPT充电器可以配置为具有电池所需的初始恒定电流(CC)和随后的恒定电压(CV)输出,从而无需复杂的控制方案即可克服松散耦合变压器(LCT)参数的局限性。同时,可以允许在整个电池充电过程中使用接近电阻的输入阻抗和软开关。为了满足这些要求,本文系统地分析了一些现有补偿拓扑的特性,并提出了两种混合IPT结构,以在不受LCT参数约束的情况下实现可配置的CC和CV输出。由于输出滤波器的不同,本文提出并实现了一种混合IPT电池充电器,该充电器实际上使用了双面LCC和LCC-S补偿电路。最后,建立了一个实验原型来验证所提出的设计。

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