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Research on Body Sensor Network Based on the Capacitive Coupling Intra-Body Communication Using a Mach-Zehnder Electro-Optical Sensor

机译:基于Mach-Zehnder光电传感器的电容耦合体内通信的人体传感器网络研究

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The intra-body communication (IBC) has the characteristics of high information security, low energy consumption, and high data transmission rate compared with other short distance wireless communications, and it is believed that IBC technology will offer significant advantages in body sensor network (BSN). In this paper, we propose a body sensor network based on the capacitive coupling intra-body communication using a Mach-Zehnder electro-optical (EO) sensor. In order to verify the advantage of the frequency response of the signal transmission based on the human body medium by using the proposed system, the in-vivo measurements have been implemented under different signal transmission paths. Furthermore, the experiment device of body sensor network based on the proposed method is established, and many-to-one signal transmission is realized by using the technology of FDMA (Frequency Division Multiple Access). Finally, the measurement results are analyzed. Results show that the proposed signal transmission system will help to achieve reliable, lower power consumption and high speed signal transmission of body sensor network.
机译:与其他短距离无线通信相比,体内通信(IBC)具有信息安全性高,能耗低和数据传输速率高的特点,并且相信IBC技术将在人体传感器网络(BSN)中提供显着优势。 )。在本文中,我们提出了一种基于电容耦合的人体传感器网络,该网络采用了Mach-Zehnder电光(EO)传感器。为了通过使用所提出的系统来验证基于人体介质的信号传输的频率响应的优点,已经在不同的信号传输路径下实现了体内测量。此外,建立了基于该方法的人体传感器网络实验装置,并采用频分多址技术实现了多对一的信号传输。最后,分析测量结果。结果表明,所提出的信号传输系统将有助于实现人体传感器网络的可靠,低功耗和高速信号传输。

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