首页> 外文会议>European Conference on Antennas and Propagation >Transmission Characteristics Between Wearable and Embedded Transceivers Based on Near-Field Coupling - Body-Channel Communication System for Human-Area Networking
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Transmission Characteristics Between Wearable and Embedded Transceivers Based on Near-Field Coupling - Body-Channel Communication System for Human-Area Networking

机译:基于近场耦合 - 用于人体区域网络的近场耦合 - 身体通道通信系统的可穿戴收发器之间的传输特性

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We discuss the transmission characteristics of novel body-channel communication that uses the surface of the human body as a communication path. This technology aims to achieve a "touch and connect" intuitive form of communication based on a near-field coupling mechanism using a carrier frequency of 6.75 MHz. Our proposed system is not only composed of transceivers on the body (wearable TRXs) but also transceivers embedded in floors, PCs, and equipment (embedded TRXs). Therefore, our system broadens the fields in which these transceivers can be applied. We measured the packet error rates (PERs) between a wearable TRX and an embedded TRX with a system of evaluation that used two kinds of phantom models to estimate the transmission characteristics of our system. In addition, we found that inserting a common-mode choke coil into the signal path effectively reduced PER.
机译:我们讨论了使用人体表面作为通信路径的新型身体通道通信的传输特性。该技术旨在基于使用6.75MHz的载波频率的近场耦合机制来实现“触摸和连接”直观的通信形式。我们所提出的系统不仅由身体上的收发器(可穿戴TRX)组成,而且还包括嵌入在地板,PC和设备(嵌入式TRX)中的收发器。因此,我们的系统拓宽了可以应用这些收发器的领域。我们测量了可穿戴TRX和嵌入式TRX之间的分组错误速率(PERS),其使用两种幻影模型来估计我们系统的传输特性的评估系统。另外,我们发现将共模扼流圈插入信号路径上,有效地减小了每个。

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