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A Survey on Intrabody Communications for Body Area Network Applications

机译:人体局域网中人体通信的研究

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The rapid increase in healthcare demand has seen novel developments in health monitoring technologies, such as the body area networks (BAN) paradigm. BAN technology envisions a network of continuously operating sensors, which measure critical physical and physiological parameters e.g., mobility, heart rate, and glucose levels. Wireless connectivity in BAN technology is key to its success as it grants portability and flexibility to the user. While radio frequency (RF) wireless technology has been successfully deployed in most BAN implementations, they consume a lot of battery power, are susceptible to electromagnetic interference and have security issues. Intrabody communication (IBC) is an alternative wireless communication technology which uses the human body as the signal propagation medium. IBC has characteristics that could naturally address the issues with RF for BAN technology. This survey examines the on-going research in this area and highlights IBC core fundamentals, current mathematical models of the human body, IBC transceiver designs, and the remaining research challenges to be addressed. IBC has exciting prospects for making BAN technologies more practical in the future.
机译:医疗保健需求的快速增长已经看到了诸如身体区域网络(BAN)范式之类的健康监测技术的新发展。 BAN技术构想了一个连续运行的传感器网络,该传感器可测量关键的生理和生理参数,例如活动性,心率和血糖水平。 BAN技术中的无线连接是其成功的关键,因为它为用户带来了便携性和灵活性。尽管射频(RF)无线技术已在大多数BAN实现中成功部署,但它们消耗大量电池电量,易受电磁干扰并存在安全问题。体内通信(IBC)是将人体用作信号传播介质的另一种无线通信技术。 IBC具有可以自然解决BAN的RF问题的特性。这项调查考察了该领域正在进行的研究,并重点介绍了IBC核心基础知识,人体当前的数学模型,IBC收发器设计以及尚待解决的其余研究挑战。 IBC在使BAN技术在将来更加实用方面具有令人兴奋的前景。

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