WBAN信道中人体组织对频率函数的衰减特性

A. Mauludiyanto, G. Hendrantoro, Muhammad Fachry Nova
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引用次数: 1

摘要

无线身体区域网络(WBAN)是指放置在身体内部、表面或周围的传感器之间的无线通信网络。WBAN系统离不开人体组织。根据频率的不同,身体组织也具有电特性。因此,身体组织可以影响无线电波在WBAN信道中传播时发生的现象。其中一种现象是衰减。本研究探讨了人体组织对WBAN信道的影响,以及频率对WBAN信道中人体组织衰减的影响。以人体为测量对象,利用矢量网络分析仪进行S21参数测量,进行震级响应测量。在NLOS条件下,人体位于两个共面维瓦尔第天线之间。对头部、胸部和腹部进行了测量。使用的频率在2ghz到6ghz之间。体组织衰减是通过找出在LOS和NLOS条件下的震级测量响应的差异得到的。对衰减数据进行统计和数值分析,确定频率对人体组织衰减的影响。根据分析结果,确定了频率对人体组织衰减的影响。频率越高,人体组织的增强衰减越明显。此外,不同部位的身体组织衰减也有显著差异。关键词:衰减,身体组织,s参数,无线体域网络。
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The Attenuation Characteristics of the Body Tissue on Frequency Function in WBAN Channel
The Wireless Body Area Network (WBAN) refers to a communication network between sensors placed on the inside, on the surface, or around the body wirelessly. WBAN system cannot be separated from body tissues. Body tissues also have electrical properties depending on frequency. Therefore, body tissue can affect the phenomena occurring in radio wave propagation in the WBAN channel. One of the phenomena is attenuation. This study investigates the impacts of body tissue on the WBAN channel and the effects of frequency on the attenuation of body tissue in the WBAN channel. The measurement of magnitude response was carried out with the human body as the measurement object by utilizing the S21 parameter measurement with a vector network analyzer. In NLOS conditions, a human body was located between two coplanar Vivaldi antenna. Measurements were conducted on the head, chest, and abdomen. The frequency used was in the range of 2 GHz to 6 GHz. The body tissue attenuation was obtained by finding the difference between the magnitude measurement response on the LOS and NLOS conditions. The attenuation data were analyzed using statistical and numerical analysis to determine the effect of frequency on the attenuation of the human body tissues. Based on the analysis results, it was identified that the frequency affected the human body tissue attenuation. The enhancement attenuation of the human body tissues occurred when the frequency was higher. Moreover, there was a significant difference in the body tissue attenuation in different parts of the body.Keywords: attenuation, body tissues, s-parameters, wireless body area network.
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