论文标题
体型的生物电子传感器节点
Bioelectronic Sensor Nodes for Internet of Bodies
论文作者
论文摘要
通过对人体周围和内部的生物传感器进行物理表达的传感,节能感测是发展低成本医疗保健的主要研究领域,从而可以连续监测和/或安全,永久操作。当用作节点网络时,这些设备会形成体型(IOB),该设备提出了某些挑战,包括严格的资源约束(Power/reage/Computation/Memory),同时感应和通信,以及由DHS和FDA Advisories所证明的。另一个主要挑战是找到一种有效的车身能量收集方法来支持感应,通信和安全子模块。由于收获的能量量的局限性,我们需要减少单位信息消耗的能量,从而命令使用传感器分析/处理。在本文中,我们回顾了低功率传感,处理和交流中的挑战和机遇,并为未来的生物传感器节点提供了动力。具体而言,我们分析,比较和对比度(a)不同的感应机制,例如电压/电流域与时间域,(b)低功率,安全通信模式,包括无线技术和人体交流,以及(c)可穿戴设备和植入物的不同动力技术。
Energy-efficient sensing with Physically-secure communication for bio-sensors on, around and within the Human Body is a major area of research today for development of low-cost healthcare, enabling continuous monitoring and/or secure, perpetual operation. These devices, when used as a network of nodes form the Internet of Bodies (IoB), which poses certain challenges including stringent resource constraints (power/area/computation/memory), simultaneous sensing and communication, and security vulnerabilities as evidenced by the DHS and FDA advisories. One other major challenge is to find an efficient on-body energy harvesting method to support the sensing, communication, and security sub-modules. Due to the limitations in the harvested amount of energy, we require reduction of energy consumed per unit information, making the use of in-sensor analytics/processing imperative. In this paper, we review the challenges and opportunities in low-power sensing, processing and communication, with possible powering modalities for future bio-sensor nodes. Specifically, we analyze, compare and contrast (a) different sensing mechanisms such as voltage/current domain vs time-domain, (b) low-power, secure communication modalities including wireless techniques and human-body communication, and (c) different powering techniques for both wearable devices and implants.