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Design of Millimeter-Wave Single-Shot Beam Training for True-Time-Delay Array

机译:实时延时阵列毫米波单发波束训练设计

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Beam training is one of the most important and challenging tasks in millimeter-wave and sub-terahertz communications. Novel transceiver architectures and signal processing techniques are required to avoid prohibitive training overhead when large antenna arrays with narrow beams are used. In this work, we leverage recent developments in wide range true-time- delay (TTD) analog arrays and frequency dependent probing beams to accelerate beam training. We propose an algorithm that achieves high-accuracy angle of arrival estimation with a single training symbol. Further, the impact of TTD front- end impairments on beam training accuracy is investigated, including the impact of gain, phase, and delay errors. Lastly, the study on impairments and required specifications of resolution and range of analog delay taps are used to provide a design insight of energy efficient TTD array, which employs a novel architecture with discrete-time sampling based TTD elements.
机译:波束训练是毫米波和亚太赫兹通信中最重要和最具挑战性的任务之一。当使用带有窄波束的大型天线阵列时,需要新颖的收发器架构和信号处理技术来避免过高的训练开销。在这项工作中,我们利用大范围真实时间延迟(TTD)模拟阵列和频率相关探测波束的最新发展来加速波束训练。我们提出了一种算法,该算法可通过单个训练符号实现高精度的到达角估计。此外,研究了TTD前端损伤对波束训练精度的影响,包括增益,相位和延迟误差的影响。最后,通过对减损以及分辨率和模拟延迟抽头范围的要求规格的研究,可以为节能型TTD阵列提供设计见解,该阵列采用了基于离散时间采样的TTD元素的新型架构。

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