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Preliminary Modeling for Intra-Body Communication*

机译:用于体内通信的初步建模*

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Intra-Body Communication (IBC) is an interesting and emerging communication methodology in recent years. Beneficial from conductive property of human body, IBC treats human body as transmission medium for sending/receiving electrical signal. As a result, interconnected cable and electromagnetic interference can be greatly reduced for devices communicated within human body. These advantages are significant for home health care system, which abundant of interconnected cables are needed. Furthermore, IBC technology also provides an alternative solution to communicate with implanted devices. Currently, pioneer researchers have proposed two general methods for realization of IBC, namely: "Capacitive coupling technique" and "Galvanic coupling/Waveguide type technique". Among the methodologies, the Galvanic technique requires neither return path nor common reference. This feature enables the technology attractive for networking biomedical devices on human body and draws much attention from recent studies. Thus, in this work, a preliminary 3D model of electromagnetic (EM) technique is developed in order to provide insight for electric signal distribution within human body. The development of a mathematical model also facilitates future researches in the aspect of communication theory of IBC, such as: optimizing carrier frequency, identifying channel characteristics, developing suitable modulation/demodulation technique, and etc. In this paper, a mathematical model, which employs a homogeneous cylinder in analogous to a human limb, is obtained by solving the Laplace Equation analytically. The proposed model is simple and preliminary, yet it encourages further development of better model in the next phase and lays a foundation for future research and development of Intra-Body Communication.
机译:人体通讯(IBC)是近年来一个有趣的和新兴的通信方法。有益从人体的导电性,IBC治疗人体作为传输介质用于发送/接收电信号。其结果是,相互连接的电缆和电磁干扰能够大大降低对人体内通信设备。这些优势是家庭医疗保健系统,丰富的互联电缆需要显著。此外,IBC技术还提供了一种替代的解决方案与植入设备进行通信。目前,先锋研究人员已经提出了实现IBC的两种通用方法,即:“电容耦合技术”和“电耦合/波导型技术”。在这些方法中,电偶技术既不需要返回路径也不共同参考。此功能使技术对人体联网生物医学设备吸引力,从最近的研究得出的关注。因此,在该工作中,电磁(EM)技术的初步三维模型,以便提供用于人体内电信号分配的见解开发的。的数学模型的发展也有利于今后的研究在IBC,如传播理论的方面:优化载频,识别的信道特性,开发适当的调制/解调技术,等。在本文中,一个数学模型,其采用以类似于人类肢体的均匀气缸中,通过解析求解拉普拉斯方程获得。该模型是简单初步的,但它鼓励更好的模型的进一步发展,在下一阶段,并奠定了未来的研究和体内通信的发展奠定了基础。

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