论文标题

在28 GHz处的波束形成的自我干扰测量:空间洞察力和角度传播

Beamformed Self-Interference Measurements at 28 GHz: Spatial Insights and Angular Spread

论文作者

Roberts, Ian P., Chopra, Aditya, Novlan, Thomas, Vishwanath, Sriram, Andrews, Jeffrey G.

论文摘要

我们介绍了28 GHz的多板毫米波(MMWave)全双工通信系统中自我干扰的测量和分析。在一个呼吸室中,我们测量了传输分阶段阵列的输入与接收分阶段阶梯阵列的输出之间的自我干扰能力,每个阵列的输出均以电子方向和高程中的多个方向进行电子转向。这些自我干扰功率测量结果阐明了全双工通信系统在带内传输时成功接收所需信号的潜力。我们的近650万次测量表明,当传输和接收分阶段阵列将它们的光束互相转向时,更多的自我干扰往往会耦合,但是转向方向的略有变化(按一个程度的顺序)可能会导致自我干扰能力的显着波动。我们分析了这些测量值,以表征自我干扰的空间变异性,以更好地量化和统计地对此灵敏度进行建模。在开发和评估MMWave全双工系统时,我们的分析和统计结果可能是有用的参考,并激发了许多未来的主题,包括梁选择,光束成型的代码簿设计和自我干扰通道建模。

We present measurements and analysis of self-interference in multi-panel millimeter wave (mmWave) full-duplex communication systems at 28 GHz. In an anechoic chamber, we measure the self-interference power between the input of a transmitting phased array and the output of a colocated receiving phased array, each of which is electronically steered across a number of directions in azimuth and elevation. These self-interference power measurements shed light on the potential for a full-duplex communication system to successfully receive a desired signal while transmitting in-band. Our nearly 6.5 million measurements illustrate that more self-interference tends to be coupled when the transmitting and receiving phased arrays steer their beams toward one another but that slight shifts in steering direction (on the order of one degree) can lead to significant fluctuations in self-interference power. We analyze these measurements to characterize the spatial variability of self-interference to better quantify and statistically model this sensitivity. Our analyses and statistical results can be useful references when developing and evaluating mmWave full-duplex systems and motivate a variety of future topics including beam selection, beamforming codebook design, and self-interference channel modeling.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源