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Galvanic coupling Intra-Body Communication link for real-time channel assessment

机译:电流耦合体内通信链接,用于实时通道评估

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The emerging field of Intra-Body Communication (IBC) will result in the innovation of many health care applications by allowing in-situ monitoring and mobility for the human subjects. We use a technique called Galvanic Coupling (GC) that uses weak electrical currents for the intra-body links, instead of RF, as this is two orders of magnitude superior when comparing energy efficiency. In this work, we demonstrate an experimental setup that can be used to implement and validate physical layer communication schemes and link layer protocols using off-the-shelf hardware and commercially procured synthetic human tissue. Our setup uses Universal Software Radio Peripherals (USRPs) as the transmitter and receiver nodes, with additional interfacing electronics, to allow flexible transmission of signals in the 100 kHz - 1 MHz frequency range. Furthermore, we provide a visual GUI-based configuration as well as demonstration of link quality based results. The complete hardware and software design, as well as an instructional video, are made available license-free for public consumption to stimulate further research in this field.
机译:人体内部通信(IBC)的新兴领域将通过允许对人类受试者进行原位监测和移动性,导致许多医疗保健应用领域的创新。我们使用一种称为流电耦合(GC)的技术,该技术将微弱的电流用于体内链接,而不是RF,因为在比较能量效率时,这要高出两个数量级。在这项工作中,我们演示了一个实验装置,该装置可用于使用现成的硬件和商业采购的合成人体组织来实施和验证物理层通信方案和链路层协议。我们的设置使用通用软件无线电外围设备(USRP)作为发送器和接收器节点,并带有附加的接口电子设备,以允许在100 kHz-1 MHz频率范围内灵活地传输信号。此外,我们提供了基于可视化GUI的配置以及基于链接质量的结果的演示。完整的硬件和软件设计以及教学视频可免费获得,以供公众消费,以刺激该领域的进一步研究。

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