Demystifying 60GHz outdoor picocells

Yibo Zhu, Zengbin Zhang, Zhinus Marzi, Chris Nelson, Upamanyu Madhow, Ben Y. Zhao, Haitao Zheng
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引用次数: 168

Abstract

Mobile network traffic is set to explode in our near future, driven by the growth of bandwidth-hungry media applications. Current capacity solutions, including buying spectrum, WiFi offloading, and LTE picocells, are unlikely to supply the orders-of-magnitude bandwidth increase we need. In this paper, we explore a dramatically different alternative in the form of 60GHz mmwave picocells with highly directional links. While industry is investigating other mmwave bands (e.g. 28GHz to avoid oxygen absorption), we prefer the unlicensed 60GHz band with highly directional, short-range links (~100m). 60GHz links truly reap the spatial reuse benefits of small cells while delivering high per-user data rates and leveraging efforts on indoor 60GHz PHY technology and standards. Using extensive measurements on off-the-shelf 60GHz radios and system-level simulations, we explore the feasibility of 60GHz picocells by characterizing range, attenuation due to reflections, sensitivity to movement and blockage, and interference in typical urban environments. Our results dispel some common myths, and show that there are no fundamental physical barriers to high-capacity 60GHz outdoor picocells. We conclude by identifying open challenges and associated research opportunities.
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揭秘60GHz户外皮蜂窝
在带宽需求巨大的媒体应用的推动下,移动网络流量将在不久的将来呈爆炸式增长。目前的容量解决方案,包括购买频谱、WiFi卸载和LTE皮蜂窝,不太可能提供我们所需的数量级带宽增长。在本文中,我们以具有高度定向链路的60GHz毫米波皮细胞的形式探索了一种截然不同的替代方案。虽然业界正在研究其他毫米波频段(例如28GHz以避免吸氧),但我们更喜欢未经许可的60GHz频段,该频段具有高度定向、短距离链路(~100m)。60GHz链路真正获得了小型蜂窝的空间重用优势,同时提供高每用户数据速率,并利用室内60GHz PHY技术和标准。通过对现成的60GHz无线电和系统级模拟的广泛测量,我们通过表征范围、反射衰减、对移动和阻塞的敏感性以及典型城市环境中的干扰来探索60GHz皮细胞的可行性。我们的研究结果消除了一些常见的误解,并表明高容量60GHz户外皮cell没有根本的物理障碍。最后,我们确定了开放的挑战和相关的研究机会。
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