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Characterization of 300-GHz Wireless Channel on a Computer Motherboard

机译:计算机主板上300 GHz无线通道的特性

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This paper presents characterization of 300-GHz wireless channel on a computer motherboard, where several different measurement scenarios have been considered. Results indicate that the presence of the ground plane and/or vertical parallel-plate structures in the channel introduces multipath that, if constructively superimposed, may create a path loss lower than free-space propagation path loss. In addition, it has been found that a few centimeters of vertical misalignment between the transmitter and the receiver result in a path loss greater than 5 dB. Furthermore, the results indicate that vertical components such as dual in-line memory modules with reflection coefficient close to one for all incident angles can be used to create directed non-line-of-sight (LoS) links with wide coherence bandwidth. Finally, for LoS propagation obstructed by large objects, such as a heatsink, the path-loss exponent of 1.77 is found, while the rotating fan causes periodic fading in the received power, indicating that channel equalization techniques will be needed to overcome deep fades. All these results indicate that optimal communications can be achieved by carefully positioning the antennas with respect to the motherboard layout.
机译:本文介绍了计算机主板上300 GHz无线通道的特性,其中考虑了几种不同的测量方案。结果表明,通道中接地平面和/或垂直平行板结构的存在会引入多路径,如果以结构方式叠加,则可能会产生比自由空间传播路径损耗低的路径损耗。另外,已经发现,发射器和接收器之间几厘米的垂直未对准导致大于5dB的路径损耗。此外,结果表明,垂直组件(如双列直插式内存模块,其所有入射角的反射系数均接近1)可用于创建具有宽相干带宽的定向非视距(LoS)链接。最后,对于受大型物体(例如散热器)阻碍的LoS传播,发现路径损耗指数为1.77,而旋转的风扇导致接收到的功率周期性衰减,这表明需要信道均衡技术来克服较深的衰落。所有这些结果表明,可以通过相对于主板布局仔细定位天线来实现最佳通信。

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