Experimental Evaluation of UWB-HB Transfer Function with LOS and NLOS for WBAN

S. Promwong, Thanadol Tiengthong, A. Chaisang
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引用次数: 1

Abstract

Short-range wireless communication with low power and high data rate is a key to the future development of wireless body area network systems. Ultra-wideband technology can achieve the primary wireless communication requirements around the human vicinity. Hence, understanding the human body's effect on wireless communication systems is very important to investigate. This paper will present the evaluation scheme for the ultra-wideband human body channel characteristics in an indoor environment. The experimental is divided into two different scenarios, i.e., line-of-sight and non-line-of-sight, based on the actual wireless body area network applications. The experimental parameters cover the full band of the ultra-wideband regarding the FCC regulation of the ultra-wideband technology. The vector network analyzer and antennas are included in the experiment to measure and record the data. The channel transfer function evaluation results are path loss and delay characteristics. The contributions are useful for further development in the future wireless body area network applications as the basic knowledge of the human body effects.
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WBAN中带LOS和NLOS的UWB-HB传递函数的实验评估
低功耗、高数据速率的短距离无线通信是未来无线体域网络系统发展的关键。超宽带技术主要可以实现人类周围附近的无线通信需求。因此,了解人体对无线通信系统的影响是非常重要的。提出了一种室内环境下超宽带人体信道特性的评价方案。根据无线体域网络的实际应用,实验分为视距和非视距两种不同的场景。根据FCC对超宽带技术的规定,实验参数覆盖了超宽带的全频段。实验中使用了矢量网络分析仪和天线来测量和记录数据。信道传递函数的评估结果是路径损失和延迟特性。作为人体效应的基础知识,这些贡献对未来无线体域网络应用的进一步发展是有益的。
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