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Accurate Rectifier Characterization and Improved Modeling of Constant Power Load Wireless Power Transfer Systems

机译:精确的整流器表征和改进的恒功率负载无线电力传输系统建模

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摘要

Wireless power transfer (WPT) is an emerging technology deployed for a wide range of applications. Various design challenges need to be addressed at both circuit and system levels. However, the conventional modeling methods either require impractical assumptions or only focus on the coil-to-coil part. This article presents a system-level model for WPT applications, including all the critical interior blocks, such as power amplifier, transmitter coil, receiver coil, matching networks, and rectifier. An accurate characterization method is proposed to obtain the rectifier impedance as a realistic load condition. Then, through frequency harmonic analysis, the power capabilities along the power flow path are analytically derived for both the fundamental and higher order harmonic components. The system efficiency and the power loss at each block can be accurately estimated. As a result, this model can not only optimize the system performance, but also help improve the thermal design for WPT products. With the assistance of this improved model, a practical design methodology is introduced to optimize the system parameters. An experimental prototype is built to validate the proposed model and the design methodology. Good correlations are observed between the calculations and experiments in both the time-domain and frequency-domain results.
机译:无线电力传输(WPT)是一种部署各种应用的新兴技术。需要在电路和系统级别解决各种设计挑战。然而,传统的建模方法需要不切实际的假设或仅聚焦在线圈到线圈部分上。本文为WPT应用提供了一个系统级模型,包括所有临界内部块,例如功率放大器,发射器线圈,接收器线圈,匹配网络和整流器。提出了一种精确的表征方法,以获得整流阻抗作为逼真的负载条件。然后,通过谐波分析,沿着电流路径的功率能力用于基本和高阶谐波分量。可以精确地估计每个块的系统效率和功率损耗。因此,该模型不仅可以优化系统性能,还可以帮助改善WPT产品的热设计。在这种改进的模型的帮助下,引入了一种实用的设计方法来优化系统参数。建立实验原型以验证所提出的模型和设计方法。在时域和频域结果中的计算和实验之间观察到良好的相关性。

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