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Wireless power transfer for implantable medical devices using piecewise resonance to achieve high peak-to-average power ratio

机译:使用分段谐振的可植入医疗设备的无线功率传输,可实现高峰均功率比

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Wireless power transfer is emerging as the pre-eminent powering technology for implantable medical devices. Efficiency, simplicity, and reliability are the key goals for receivers in vivo. We use piecewise resonant wireless power transfer (PR-WPT) to achieve these goals. A high peak-to-average power ratio (PAPR) waveform is generated by a current-mode class D amplifier operating at 6.78 MHz. A 4-order passive filter is matched to the fundamental and third harmonic voltages of the transmitter, using harmonic elimination for the waveform and closed-form impedance analysis. A full-bridge Schottky rectifier converts the matched voltage into dc. Experiment demonstrates the proof of principle and simulation results show that the piecewise resonant methods can increase the dc output voltage by up to 30%, hence improving the rectifier efficiency. Potential applications for PR-WPT systems are discussed.
机译:无线功率传输正在成为植入式医疗设备的卓越供电技术。效率,简单性和可靠性是体内接收器的主要目标。我们使用分段谐振无线功率传输(PR-WPT)来实现这些目标。工作在6.78 MHz的电流模式D类放大器会产生高峰均比(PAPR)波形。 4阶无源滤波器与发射器的基波和三次谐波电压匹配,使用谐波消除功能进行波形和闭式阻抗分析。全桥肖特基整流器将匹配的电压转换为直流电。实验证明了原理的证明,仿真结果表明,分段谐振方法可以使直流输出电压增加高达30%,从而提高了整流器的效率。讨论了PR-WPT系统的潜在应用。

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