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High data rate ultrasonic communications for wireless intra-body networks

机译:用于无线体内网络的高数据速率超声通信

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It is well known that electromagnetic radio-frequency (RF) waves that are the basis of most commercial wireless technologies are largely unsuitable to interconnect deeply implanted medical devices. RF waves are in fact absorbed by aqueous biological tissues and prone to malicious jamming attacks or to environmental interference from pervasively deployed RF communication systems; moreover, they pose a potential safety hazard when exposure of tissues is prolonged and at high power. While existing wireless technologies can satisfy the requirements of some specific applications, the root challenge of enabling networked intra-body miniaturized sensors and actuators that communicate through body tissues is largely unaddressed. Considering these limitations, this article proposes a high data rate ultrasonic communication scheme for wireless intra-body networks. The proposed scheme can enable various applications that require high sampling rates such as neural data recording or monitoring of the digestive tract through endoscopic pills. The proposed scheme is based on Orthogonal Frequency-Division Multiplexing (OFDM), which is proven to be robust against frequency-selective channels with relatively long delay spreads like the intra-body ultrasonic channel. The proposed scheme is implemented in a prototype ultrasonic software-radio and demonstrated to achieve data rates up to 28.12 Mbit/s through synthetic phantoms mimicking the ultrasonic propagation characteristics of biological tissues.
机译:众所周知,作为大多数商业无线技术基础的电磁射频(RF)波在很大程度上不适合互连深度植入的医疗设备。实际上,射频波被水性生物组织吸收,容易受到恶意干扰或普遍部署的射频通信系统的环境干扰;此外,如果长时间和以大功率暴露组织,它们会构成潜在的安全隐患。尽管现有的无线技术可以满足某些特定应用的需求,但使能通过人体组织进行通信的联网的体内微型传感器和执行器的根本挑战仍未得到解决。考虑到这些限制,本文提出了一种用于无线体内网络的高数据速率超声通信方案。所提出的方案可以实现要求高采样率的各种应用,例如神经数据记录或通过内窥镜丸监测消化道。所提出的方案是基于正交频分复用(OFDM)的,它被证明对诸如人体超声通道之类具有相对长的延迟扩展的频率选择通道具有鲁棒性。拟议的方案是在原型超声软件无线电中实现的,并通过模仿人体组织超声传播特性的合成体模,证明可实现高达28.12 Mbit / s的数据速率。

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