Noncoherent mmWave Path Tracking

M. Rasekh, Zhinus Marzi, Yanzi Zhu, Upamanyu Madhow, Haitao Zheng
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引用次数: 95

Abstract

Millimeter (mm) wave picocellular networks have the potential for providing the 1000X capacity increase required to keep up with the explosive growth of mobile data. However, maintaining beams towards mobile users and adapting to frequent blockage, requires efficient, dynamic path tracking algorithms. In this paper, we develop and experimentally demonstrate a novel noncoherent compressive strategy for this problem, and compare it with conventional hierarchical and exhaustive beam scanning. To the best of our knowledge, this is the first experimental demonstration of practical, scalable path estimation for mmWave/60GHz picocells. Our results indicate the feasibility of sub-second path tracking with low overhead on today's mmWave hardware, and open up a rich space for design of 5G mmWave networks.
非相干毫米波路径跟踪
毫米波微蜂窝网络有潜力提供1000倍的容量增长,以跟上移动数据的爆炸式增长。然而,保持波束对移动用户并适应频繁的阻塞,需要有效的动态路径跟踪算法。在本文中,我们开发并实验证明了一种新的非相干压缩策略,并将其与传统的分层和穷举波束扫描进行了比较。据我们所知,这是毫米波/60GHz皮细胞实用的、可扩展的路径估计的第一个实验演示。我们的研究结果表明,在当今的毫米波硬件上,低开销的亚秒路径跟踪是可行的,并为5G毫米波网络的设计开辟了丰富的空间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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