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Channel modelling and propagation measurements for a bodyworn 5.2 GHz terminal moving in the indoor environment

机译:在室内环境中移动的5.2 GHz身体佩戴终端的信道建模和传播测量

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Proposed applications for broadband wireless local area networks may include the use of bodyworn or handportable terminals. The proximity of the user's body has a significant effect on the radio propagation characteristics through spatial filtering of the multipath channel. This paper compares measurements and simulations of a narrowband 5.2 GHz radio channel with a fixed transmitter and a bodyworn receiver. The modelling technique was a site-specific ray-tracing simulator incorporating a modified three-dimensional radiation pattern of the bodyworn receiver. Two indoor environments were considered, an 18 m long corridor and a 42 m/sup 2/ office. The results show that the received power envelope and local mean values are strongly dependent on body shadowing in relation to the direct ray. In the corridor, the predicted non-line-of sight (NLOS) mean received powers was 13.6 dB lower than for line-of-sight (LOS). In the office, the predicted NLOS received power was 5.2 dB lower than LOS. The measured body shadowing effect was lower: 5.4 dB for the corridor and 3.8 dB for the office. Further analysis of level crossing rate and average fade duration showed that the prediction tool tended to underestimate the degree of fading. This was attributed to the movement limitations of the body model used.
机译:宽带无线局域网的拟议应用可能包括使用可穿戴式或便携式终端。通过多径信道的空间滤波,用户身体的接近度对无线电传播特性有重大影响。本文比较了具有固定发射器和体戴式接收器的5.2 GHz窄带无线电信道的测量和仿真。建模技术是一个特定位置的光线跟踪模拟器,该模拟器结合了经修改的穿戴式接收器的三维辐射方向图。考虑了两个室内环境,一个18 m长的走廊和一个42 m / sup 2 /办公室。结果表明,接收到的功率包络和局部平均值在很大程度上取决于与直接射线有关的身体阴影。在走廊中,预计的非视线(NLOS)平均接收功率比视线(LOS)低13.6 dB。在办公室,预计的NLOS接收功率比LOS低5.2 dB。测得的身体阴影效果较低:走廊为5.4 dB,办公室为3.8 dB。对电平交叉速率和平均衰落持续时间的进一步分析表明,预测工具趋向于低估了衰落的程度。这归因于所使用的身体模型的运动限制。

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