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Comprehensive Survey of Galvanic Coupling and Alternative Intra-Body Communication Technologies

机译:综合调查电流耦合及替代体内通信技术

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Fundamental understanding of the processes that affect the state and well being of the human body continues to be a challenging frontier. Recent technological developments point toward the possibility of implanting sensors inside the body, thus enabling in-situ data gathering and real-time actuation with the transmission of the sensed data to other implants as well as external computational clouds. This paper aims to survey and compare the existing methods for achieving intra-body communication (IBC) covering the methods of galvanic coupling (waveguide-based), capacitive coupling (electric field-based), ultrasound (acoustic-based) and magnetic resonant coupling (magnetic field-based). The performance of each method is evaluated in terms of its physical layer characteristics, including operating frequency range, attenuation effects within the body, channel modeling methods, power consumption, achievable data rates, communication distance, and safety limits under prolonged signal exposure. Based on this metric-driven study, we identify specific scenarios where one or more of these different IBC methods are better suited. For the specific case of galvanic coupling, we provide select system designs, experimental results from a custom-designed testbed and target applications that are more appropriate for this method of IBC. To the best of our knowledge, this is the first work that encapsulates the state of the art and current research trends for several different types of IBC solutions, a topic that promises to revolutionize the future of healthcare.
机译:对影响国家和福祉的过程的基本理解仍然是一个挑战的边境。最近的技术发展指出了植入体内传感器的可能性,从而使原位数据收集和实时致动与感测数据传输到其他植入物以及外部计算云。本文旨在调查和比较涵盖电流耦合(基于波导),电容耦合(基于电场),超声(基于电气场)和磁共振耦合的覆盖体内通信(IBC)的现有方法(磁场基)。根据其物理层特性评估每种方法的性能,包括运行频率范围,身体内的衰减效应,信道建模方法,功耗,可实现的数据速率,通信距离以及在长时间信号曝光下的安全限制。基于该度量驱动的研究,我们确定了这些不同IBC方法中的一种或多种更适合的特定方案。对于电流耦合的具体情况,我们提供选择的系统设计,来自定制设计的测试用的实验结果,以及更适合IBC方法的目标应用。据我们所知,这是封装艺术艺术状态和当前研究趋势的第一个工作,以及几种不同类型的IBC解决方案,这是一个有望彻底改变医疗保健未来的主题。

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