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Fine Tuning of an Inductive Link Through a Voltage-Controlled Capacitance

机译:通过压控电容微调感应链路

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摘要

Wireless power transfer is a technique usually based on an inductive link, used for delivering energy to remote devices. The power of different applications ranges from microwatts to hundreds of kilowatts, e.g., in biomedical implants and electric vehicles. The transferred power is highly dependent on the relative position between the inductive link coils. Many studies have been presented considering static or quasi-static conditions, based on a fixed tuned circuit. However, when the coils are not stationary, the inductive link must be dynamically tuned to keep the designed output power. This paper presents a methodology for dynamically tune the inductive link by means of a variable capacitance. A voltage-controlled capacitance using concepts of the negative impedance converter and capacitance multiplier is proposed. The phase angle between the input voltage and current is used as the error signal to control the variable capacitance and keep the output power operating point. The experimental evaluation shows that the proposed methodology can significantly improve the power delivered to the load in comparison to a fixed inductive link.
机译:无线功率传输是一种通常基于感应链路的技术,用于向远程设备传输能量。例如在生物医学植入物和电动车辆中,不同应用的功率范围从微瓦到数百千瓦。传输的功率高度依赖于感应链接线圈之间的相对位置。基于固定的调谐电路,已经提出了许多考虑静态或准静态条件的研究。但是,当线圈不固定时,必须动态调整感应链接以保持设计的输出功率。本文提出了一种通过可变电容动态调谐电感链路的方法。提出了一种使用负阻抗转换器和电容倍增器的概念的压控电容。输入电压和电流之间的相角用作误差信号,以控制可变电容并保持输出功率工作点。实验评估表明,与固定的电感链路相比,所提出的方法可以显着改善传递给负载的功率。

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