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Monopulse-based THz Beam Tracking for Indoor Virtual Reality Applications

机译:基于Monopulse的THz梁跟踪,用于室内虚拟现实应用

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摘要

Terahertz spectrum is being researched upon to provide ultra-high throughput radio links for indoor applications e.g. virtual reality (VR), etc. as well as outdoor applications e.g. backhaul links, etc. This paper investigates a monopulse-based beam tracking approach for limited mobility users relying on sparse massive multiple input multiple output (MIMO) wireless channels. Owing to the sparsity, beamforming is realized using digitally-controlled radio frequency (RF) / inter-mediate-frequency (IF) phase shifters with constant amplitude constraint for transmit power compliance. A monopulse-based beam tracking technique, using received signal strength indication (RSSI) is adopted to avoid feedback overheads for obvious reasons of efficacy and resource savings. The Matlab implementation of the beam tracking algorithm is also reported. This Matlab implementation has been kept as general purpose as possible using functions wherein the channel, beamforming codebooks, monopulse comparator, etc. can easily be updated for specific requirements and with minimum code amendments.
机译:正在研究Terahertz频谱,为室内应用提供超高吞吐量无线电链路,例如,虚拟现实(VR)等以及户外应用。回程链路等。本文研究了依赖于稀疏大量多输入多输出(MIMO)无线通道的有限移动用户的Monopulse的光束跟踪方法。由于稀疏性,使用数字控制的射频(RF)/间频率(IF)相移器来实现波束成形,具有恒定幅度约束,用于发射功率合规性。采用了一种基于单孔的光束跟踪技术,使用接收信号强度指示(RSSI)以避免反馈开销,有效性和资源节省的显而易见的原因。还报告了光束跟踪算法的MATLAB实现。该MATLAB实现通过使用其中函数,频道,波束成形码本,Monopulse比较器等可以轻松更新特定要求以及最小代码修正。

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