A Wireless Network of 8.8-mm3 Bio-Implants Featuring Adaptive Magnetoelectric Power and Multi-Access Bidirectional Telemetry

Zhanghao Yu, Wei Wang, Joshua C. Chen, Zhiyu Chen, Yan He, Amanda Singer, Jacob T. Robinson, Kaiyuan Yang
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引用次数: 2

Abstract

This paper presents a hardware platform for wireless mm-sized bio-implant networks, exploiting adaptive magnetoelectric power transfer and novel schemes for efficient bidirectional multi-access communication. The closed-loop power control mitigates power delivery fluctuations caused by distance and alignment change and avoids redundant power of the external transceiver. The system also enables simultaneous power and time-domain modulated downlink data with a 5% peak power transfer efficiency and a 62.3-kbps maximum data rate at 340-kHz carrier frequency; multi-access uplink of all the implants enabled by individually programmed IF with a 40-kbps maximum data rate at 31-MHz carrier frequency; and more than 6-cm distance between the implant and the external TRX.
8.8 mm3生物植入物无线网络,具有自适应磁电功率和多址双向遥测功能
本文提出了一种无线毫米大小生物植入物网络的硬件平台,利用自适应磁电传输和有效的双向多址通信的新方案。闭环功率控制减轻了由于距离和对准变化引起的功率输出波动,避免了外部收发器的冗余功率。该系统还能够同时实现功率和时域调制下行数据,在340 khz载波频率下具有5%的峰值功率传输效率和62.3 kbps的最大数据速率;所有植入物的多址上行链路由单独编程的中频实现,在31 mhz载波频率下具有40 kbps的最大数据速率;种植体与外部TRX之间的距离大于6cm。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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