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首页> 外文期刊>Advanced Science Letters >Low Voltage Wireless Power Transfer (WPT) Using Resonant Inductive Coupling Charging for Short-Range Operation
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Low Voltage Wireless Power Transfer (WPT) Using Resonant Inductive Coupling Charging for Short-Range Operation

机译:低压无线电源传输(WPT)使用谐振电感耦合充电进行短程操作

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摘要

An inductive coupling technique was used to transfer an electrical energy wirelessly from transmitter to receiver circuits, which used same resonance frequency to obtain maximum power transfer. As the coil inductor of 7 μH and the resonating capacitor of 1 μF arespecified for air-core coils to produce resonant frequency, the simulation of wireless power transfer (WPT) system was done using Multisim software. The experiment showed that electric power is transferred at a frequency of approximately 60 kHz with an efficiency of 94% with resonant coupling.Whereas, the maximum output voltage at both transmitter and receiver circuits were 16.5 V and 15.5 V, respectively. The maximum air gap distance was 8 cm to charge a lower power device. Furthermore, resonant coupling repeater enables to extend the distance with approximately 4 cm as well asacts as a guide path which proved the efficiency of the WPT can be further improved via resonance coupling and frequency repeater. Thus, this WPT system is suitable to charge low power electronics such as implantable biomedical devices, remote sensing and portable electronics.
机译:使用电感耦合技术用于将电能无线地从发射机转移到接收器电路,该接收器电路使用相同的谐振频率来获得最大功率传输。作为7℃的线圈电感器和谐振电容器为1 μ f的谐振电容器,用于产生谐振频率,仿真无线电力传输(WPT)系统是使用MultiSim软件完成的。实验表明,通过谐振耦合的效率为大约60kHz的频率以大约60kHz的频率传递电力,发射器和接收器电路的最大输出电压分别为16.5V和15.5V。最大气隙距离为8cm以对较低功率的装置充电。此外,谐振耦合转发器能够使大约4cm的距离延伸,并且通过谐振耦合和频率中继器可以进一步改善WPT的引导路径。因此,该WPT系统适合充电低功率电子设备,例如可植入的生物医学装置,遥感和便携式电子设备。

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