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Comprehensive Analysis and Measurement of Frequency-Tuned and Impedance-Tuned Wireless Non-Radiative Power-Transfer Systems

机译:调频和阻抗调谐的无线非辐射电力传输系统的综合分析和测量

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摘要

This paper theoretically and experimentally investigates frequency-tuned and impedance-tuned wireless non-radiative power-transfer (WNPT) systems. Closed-form expressions for the efficiencies of both types of systems are presented as functions of frequency and system (circuit) parameters. In the frequency-tuned system, the operating frequency is adjusted to compensate for changes in mutual inductance that occur for variations of transmitter and receiver loop positions. Frequency-tuning is employed for a range of distances over which the loops are strongly coupled. In contrast, the impedance-tuned system employs varactor-based matching networks to compensate for changes in mutual inductance, and to achieve a simultaneous conjugate impedance match over a range of distances. The frequency-tuned system is simpler to implement, while the impedance-tuned system is more complex, but can achieve higher efficiencies. Both of the experimental wireless non-radiative power-transfer systems studied employ resonant shielded loops as transmitting and receiving devices.
机译:本文在理论和实验上研究了频率调谐和阻抗调谐的无线非辐射功率传输(WNPT)系统。两种类型的系统效率的闭式表达式都作为频率和系统(电路)参数的函数给出。在频率调谐系统中,调节工作频率以补偿因发射器和接收器环路位置变化而引起的互感变化。频率调谐用于环路牢固耦合的距离范围。相反,阻抗调谐系统采用基于变容二极管的匹配网络来补偿互感的变化,并在一定距离范围内实现同步共轭阻抗匹配。频率调谐系统更易于实现,而阻抗调谐系统则更复杂,但可以获得更高的效率。研究的两个实验性无线非辐射功率传输系统均采用谐振屏蔽环路作为发送和接收设备。

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