A 3D Detect-array for Low-complexity W-band Beam Sensing and Direction-of-Arrival Estimation

J. Kimionis, M. Holyoak, Amit Singh, S. Shahramian, Y. Baeyens
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Abstract

This paper presents a proof-of-concept system for low-complexity mmWave beam sensing at W-band that can be used for RF direction-of-arrival (DoA) estimation. Instead of relying on complicated RSSI - or phase-detecting receivers, the system exploits 3D geometric structures with single-diode power detector arrays (detect-arrays) to estimate a mmWave beam's DoA. Such low-complexity detectors can be highly advantageous for mobile units in enterprise IoT settings, where mmWave access points are already deployed for high-datarate communication. The latter can cooperatively provide signal bursts to achieve location awareness for drones or robots in GPS-denied indoor environments, without the need for highly-complex receivers with downconverter chains. The technique could be beneficial in establishing positioning reference points or assisting inertial measurement units (IMUs) to reset their accumulative error.
一种低复杂度w波段波束传感和到达方向估计的三维探测阵列
本文提出了一种用于w波段低复杂度毫米波波束传感的概念验证系统,可用于射频到达方向(DoA)估计。该系统不依赖于复杂的RSSI或相位检测接收器,而是利用单二极管功率探测器阵列(探测阵列)的3D几何结构来估计毫米波波束的DoA。这种低复杂性的检测器对于企业物联网环境中的移动设备非常有利,其中已经部署了毫米波接入点用于高数据通信。后者可以协同提供信号突发,以实现无人机或机器人在没有gps的室内环境中的位置感知,而不需要带有下变频器链的高度复杂的接收器。该技术可用于建立定位参考点或辅助惯性测量单元(imu)重置其累积误差。
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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