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A dual-mode wireless power transfer system using multi-frequency programmed pulse width modulation

机译:使用多频率编程的脉冲宽度调制的双模式无线电力传输系统

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Multi-frequency wireless power transfer (WPT) is advantageous in facilitating compatibility with different WPT standards. However, implementing a multi-frequency transmitter often requires compromises in system size, complexity, power transfer capability, or output regulation. In this paper, a single-inverter based dual-mode WPT system is proposed. The system employs a multi-frequency programmed pulse width modulation (MFPWM) scheme. This dual-frequency modulated inverter can simultaneously generate and regulate 100 kHz and 6.78 MHz outputs, which facilitates the development of multi-standard WPT technology for consumer electronics. In addition, the principle of the proposed modulation is illustrated, where two different frequencies are concurrently modulated in the programmed pulse train of square waveforms, while eliminating certain harmonics in between. Design tradeoffs and constraints are examined through analytical circuit models. Finally, experimental results are provided to verify the effectiveness of the proposed WPT system.
机译:多频无线电力传输(WPT)在促进与不同WPT标准的兼容性方面具有优势。但是,实现多频发射机通常需要在系统尺寸,复杂性,功率传输能力或输出调节方面做出折衷。本文提出了一种基于单逆变器的双模WPT系统。该系统采用了多频率编程的脉冲宽度调制(MFPWM)方案。这款双频调制逆变器可以同时生成和调节100 kHz和6.78 MHz输出,从而促进了针对消费电子产品的多标准WPT技术的发展。此外,还说明了所提出的调制原理,其中在方波的编程脉冲序列中同时调制了两个不同的频率,同时消除了两者之间的某些谐波。设计折衷和约束条件通过分析电路模型进行检查。最后,提供实验结果以验证所提出的WPT系统的有效性。

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