基于软件无线电的高速毫米波移动实验

IF 0.7 Q4 TELECOMMUNICATIONS
J. O. Lacruz, Dolores García, Pablo Jiménez Mateo, J. Palacios, J. Widmer
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引用次数: 0

摘要

毫米波通信已经成为WLAN标准和5G移动网络不可或缺的一部分,随着应用数据速率需求的增加,越来越多的流量将转移到这些非常高的频段。尽管在6 GHz以下的研究中有很多强大的实验平台可供选择,但由于对硬件的要求非常高,构建毫米波系统要困难得多。为了解决缺乏合适的实验平台的问题,我们提出了mm-FLEX,这是一个灵活的模块化开放平台,具有实时信号处理能力,支持2ghz带宽,并与当前的毫米波标准兼容。该平台围绕快速FPGA处理器和前端60 GHz相控天线阵列构建,可以在纳秒级时间尺度上重新配置。再加上其易用性,这使得该平台成为研究高移动场景下波束训练和全带宽毫米波信号处理的独特工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
High-Speed Millimeter-Wave Mobile Experimentation on Software-Defined Radios
Millimeter-wave (mm-Wave) communications have become an integral part of WLAN standards and 5G mobile networks and, as application data rate requirements increase, more and more traffic will move to these very high frequency bands. Although there is an ample choice of powerful experimental platforms for sub-6 GHz research, building mm-Wave systems is much more difficult due to the very high hardware requirements. To address the lack of suitable experimentation platforms, we propose mm-FLEX, a flexible and modular open platform with real-time signal processing capabilities that supports a bandwidth of 2 GHz and is compatible with current mm-Wave standards. The platform is built around a fast FPGA processor and a 60 GHz phased antenna array at front-end that can be reconfigured at nanosecond timescales. Together with its ease of use, this turns the platform into a unique tool for research on beam training in highly mobile scenarios and full-bandwidth mm-Wave signal processing.
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