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Experimental Investigation of Non-Line-of-Sight Channels in an Intra-Body Network at 2.38 GHz

机译:2.38 GHz人体内部网络中非视距信道的实验研究

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The characteristics of the intra-body propagation channel between implanted antennas are highly application dependent. Measurements of the forward path gain between identical implant antennas within two multi-layered tissue mimicking liquid phantoms were used to investigate the nature of the intra-body channel at 2.38 GHz. One of the antennas was held in fixed locations in the phantoms and a robotic positioner with millimeter accuracy was used to vary the second antenna's position. The results show that the shortest line-of-sight path is not always dominant and depending on the particular geometry of material layers and their dielectric properties other propagation paths may also be important. This highlights the importance of careful system design in intra-body networks as the link budget between implanted nodes may need to consider alternative propagating paths, depending on the application scenario.
机译:植入天线之间的体内传播通道的特性高度依赖于应用。在两个模仿液体体模的多层组织中,相同植入天线之间的前向路径增益的测量用于研究2.38 GHz频率下体内通道的性质。其中一根天线固定在体模中的固定位置,并使用具有毫米精度的机器人定位器来改变第二根天线的位置。结果表明,最短的视线路径并不总是占主导地位,根据材料层的特定几何形状及其介电特性,其他传播路径也可能很重要。这突出了在体内网络中进行仔细的系统设计的重要性,因为根据应用场景的不同,植入节点之间的链路预算可能需要考虑备选的传播路径。

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