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Modeling and Characterization of the Implant Intra-Body Communication Based on Capacitive Coupling Using a Transfer Function Method

机译:基于传递函数的电容耦合的植入物体内通信建模与表征

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摘要

Implantable devices have important applications in biomedical sensor networks used for biomedical monitoring, diagnosis and treatment, etc. In this paper, an implant intra-body communication (IBC) method based on capacitive coupling has been proposed, and the modeling and characterization of this kind of IBC has been investigated. Firstly, the transfer function of the implant IBC based on capacitive coupling was derived. Secondly, the corresponding parameters of the transfer function are discussed. Finally, both measurements and simulations based on the proposed transfer function were carried out, while some important conclusions have been achieved, which indicate that the achieved transfer function and conclusions are able to help to achieve an implant communication method with the highly desirable characteristics of low power consumption, high data rate, high transmission quality, etc.
机译:植入式设备在用于生物医学监测,诊断和治疗等的生物医学传感器网络中具有重要的应用。本文提出了一种基于电容耦合的植入物体内通信(IBC)方法,并对其进行建模和表征。 IBC的数量已经过调查。首先,推导了基于电容耦合的植入式中型散货箱的传递函数。其次,讨论传递函数的相应参数。最后,基于所提出的传递函数进行了测量和仿真,同时获得了一些重要的结论,这表明所实现的传递函数和结论能够帮助实现具有高度期望的低传递特性的植入物通信方法。功耗,高数据速率,高传输质量等

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