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A Closed Loop Wireless Power Transmission System Using a Commercial RFID Transceiver for Biomedical Applications

机译:用于生物医学应用的商业RFID收发器的闭环无线电力传输系统

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This paper presents a standalone closed loop wireless power transmission system that is built around a commercial off-the-shelf (COTS) radio frequency identification (RFID) transceiver (MLX90121) operating at 13.56 MHz. It can be used for inductively powering implantable biomedical devices in a closed loop fashion. Any changes in the distance and misalignment between transmitter and receiver coils in near-field wireless power transmission can cause a significant change in the received power, which can cause either malfunction or excessive heat dissipation. RFID transceivers are often used open loop. However, their back telemetry capability can be utilized to stabilize the received voltage on the implant. Our measurements showed that the delivered power to the transponder was maintained at 1.48 mW over a range of 6 to 12 cm, while the transmitter power consumption changed from 0.3 W to 1.21 W. The closed loop system can also oppose voltage variations as a result of sudden changes in load current.
机译:本文介绍了独立的闭环无线电力传输系统,内置于商业现成(COTS)射频识别(RFID)收发器(MLX90121),以13.56 MHz运行。它可以用于闭环时装电感地供电的植入生物医学设备。近场无线电力传输中发射器和接收器线圈之间的距离和未对准的任何变化都可能导致接收功率的显着变化,这可能导致故障或过度散热。 RFID收发器通常使用开环。然而,它们的背遥测能力可用于稳定植入物上的接收电压。我们的测量结果表明,转发器的输送电源在6至12厘米的范围内保持在1.48 MW,而发射器功耗从0.3W变为1.21W。闭环系统也可以反对电压变化负载电流的突然变化。

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