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An NFC on Two-Coil WPT Link for Implantable Biomedical Sensors under Ultra-Weak Coupling

机译:超弱耦合下可植入生物医学传感器两线圈WPT链接上的NFC

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摘要

The inductive link is widely used in implantable biomedical sensor systems to achieve near-field communication (NFC) and wireless power transfer (WPT). However, it is tough to achieve reliable NFC on an inductive WPT link when the coupling coefficient is ultra-low (0.01 typically), since the NFC signal (especially for the uplink from the in-body part to the out-body part) could be too weak to be detected. Traditional load shift keying (LSK) requires strong coupling to pass the load modulation information to the power source. Instead of using LSK, we propose a dual-carrier NFC scheme for the weak-coupled inductive link; using binary phase shift keying (BPSK) modulation, its downlink data are modulated on the power carrier (2 MHz), while its uplink data are modulated on another carrier (125 kHz). The two carriers are transferred through the same coil pair. To overcome the strong interference of the power carrier, dedicated circuits are introduced. In addition, to minimize the power transfer efficiency decrease caused by adding NFC, we optimize the inductive link circuit parameters and approach the receiver sensitivity limit. In the prototype experiments, even though the coupling coefficient is as low as 0.008, the in-body transmitter costs only 0.61 mW power carrying 10 kbps of data, and achieves a 1 × 10−7 bit error rate under the strong interference of WPT. This dual-carrier NFC scheme could be useful for small-sized implantable biomedical sensor applications.
机译:感应链路广泛用于可植入生物医学传感器系统中,以实现近场通信(NFC)和无线功率传输(WPT)。但是,当耦合系数极低(通常为0.01)时,很难在感应WPT链路上实现可靠的NFC,因为NFC信号(尤其是从体内部分到体外部分的上行链路)可能太弱以至于无法检测到。传统的负载移位键控(LSK)需要强耦合,才能将负载调制信息传递到电源。代替使用LSK,我们为弱耦合感应链路提出了双载波NFC方案。使用二进制相移键控(BPSK)调制,其下行链路数据在功率载波(2 MHz)上进行调制,而其上行链路数据在另一载波(125 kHz)上进行调制。两个载波通过相同的线圈对传输。为了克服功率载波的强烈干扰,引入了专用电路。此外,为了最大程度地减少因添加NFC引起的功率传输效率下降,我们优化了感应链路电路参数并接近接收器灵敏度极限。在原型实验中,即使耦合系数低至0.008,体内发送器仅花费0.61 mW的功率即可传输10 kbps数据,并实现了1×10 −7 误码率在WPT的大力干预下。这种双载波NFC方案可用于小型可植入生物医学传感器应用。

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