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基于多探头微波暗室的大规模MIMO-OTA测试方法综述
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作者 张展鹏 田磊 +4 位作者 王珩 邓钢 胡振云 赵昌盛 张建华 《无线电工程》 2025年第2期357-365,共9页
随着5G、B5G和6G网络的快速发展,大规模多输入多输出(Multiple Input Multiple Output,MIMO)技术成为提高无线通信系统数据吞吐量和频谱效率的关键手段。传统的现场测试方法已经无法满足现代无线通信设备高度集成化的需求,空口(Over-the... 随着5G、B5G和6G网络的快速发展,大规模多输入多输出(Multiple Input Multiple Output,MIMO)技术成为提高无线通信系统数据吞吐量和频谱效率的关键手段。传统的现场测试方法已经无法满足现代无线通信设备高度集成化的需求,空口(Over-the-Air,OTA)测试因其灵活性和可靠性逐渐成为主流。介绍和对比了多探头微波暗室(Multi-Probe Anechoic Chamber,MPAC)法、辐射两步(Radiated Two-Step,RTS)法和混响室(Reverberation Chamber,RC)法3种常用测试方法的原理和优劣,指出MPAC法更适用于大规模MIMO-OTA测试。重点综述和分析MPAC法中探头选择和权重计算中优化算法的应用,例如差分进化、正交匹配追踪及麻雀搜索算法,讨论了这些算法对信道重构精度的影响。提出了未来大规模MIMO-OTA测试的挑战和难点,为未来5G及更高代通信系统中的MIMO-OTA测试和优化提供了理论支持和实践指导。 展开更多
关键词 多输入多输出 空口测试 多探头微波暗室法 辐射两步法 混响室法
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Spatial fading channel emulation for over-the-air testing ofmillimeter-wave radios:concepts and experimental validations
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作者 Wei FAN Lassi HENTILA Pekka KYOTI 《Frontiers of Information Technology & Electronic Engineering》 SCIE EI CSCD 2021年第4期548-559,共12页
Millimeter-wave(mmWave)communication is regarded as the key enabling component for fifth-generation(5G)cellular systems due to the large available spectrum bandwidth.To make mmWave new radio(NR)a reality,tremendous ef... Millimeter-wave(mmWave)communication is regarded as the key enabling component for fifth-generation(5G)cellular systems due to the large available spectrum bandwidth.To make mmWave new radio(NR)a reality,tremendous efforts have been exerted from the industry and academia.Performance evaluation of mmWave NR is a mandatory step and the key to ensuring the success of mmWave 5G deployment.Over-the-air(OTA)radiated method of testing mmWave NR in laboratory conditions is highly attractive,since it facilitates virtual field testing of mmWave devices in realistic propagation conditions.In this paper,we first discuss the need for and challenges in OTA measurement of mmWave 5G NR under fading channel conditions.After that,two promising candidate solutions,i.e.,wireless cable and multi-probe anechoic chamber(MPAC),are detailed.Their principles,applicability for mmWave NR,and main challenges are discussed.Furthermore,preliminary experimental validation results in a frequency range 2 anechoic chamber are demonstrated for the wireless cable and MPAC methods at 28 GHz. 展开更多
关键词 Spatial channel model Over-the-air(OTA)testing Wireless cable method Multi-probe anechoic chamber(mpac)method FR2 validation
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