无线电波束空间中的机器人导航:利用机器人智能实现无缝毫米波网络覆盖

Anfu Zhou, Shaoqing Xu, Song Wang, Jingqi Huang, Shaoyuan Yang, Teng Wei, Xinyu Zhang, Huadong Ma
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引用次数: 18

摘要

新兴的毫米波(mmWave)网络技术有望掀起多gbps无线应用的新浪潮。然而,由于毫米波无线电的高方向性,保持稳定的链路连接仍然是一个悬而未决的问题。用户的轻微方向变化,加上运动和堵塞,可以很容易地断开链接。在本文中,我们提出了miDroid,一种机器人毫米波中继,通过无线传感和自主运动/旋转规划来优化网络覆盖。机器人继电器通过估计所有信号路径的几何形状,自动构建环境的几何形状/反射率。然后,它沿着最佳的移动轨迹进行导航,并确保客户端不受环境/人类动态的影响而持续连接。我们已经在一个可编程机器人上制作了miDroid的原型,它携带了一个普通的60千兆赫无线电。我们的现场试验表明,即使在受限的速度和移动区域,miDroid也可以在动态环境中实现几乎完全覆盖。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Robot Navigation in Radio Beam Space: Leveraging Robotic Intelligence for Seamless mmWave Network Coverage
The emerging millimeter-wave (mmWave) networking technology promises to unleash a new wave of multi-Gbps wireless applications. However, due to high directionality of the mmWave radios, maintaining stable link connection remains an open problem. Users' slight orientation change, coupled with motion and blockage, can easily disconnect the link. In this paper, we propose miDroid, a robotic mmWave relay that optimizes network coverage through wireless sensing and autonomous motion/rotation planning. The robot relay automatically constructs the geometry/reflectivity of the environment, by estimating the geometries of all signal paths. It then navigates itself along an optimal moving trajectory, and ensures continuous connectivity for the client despite environment/human dynamics. We have prototyped miDroid on a programmable robot carrying a commodity 60 GHz radio. Our field trials demonstrate that miDroid can achieve nearly full coverage in dynamic environment, even with constrained speed and mobility region.
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