Millimeter-Wave Base Station Cooperation Technologies for High-Mobility Environments

Tatsuki Okuyama, S. Suyama, Nobuhide Nonaka, T. Asai
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Abstract

5G communication introduces analog beamforming (BF) using massive MIMO (M-MIMO) in millimeter-wave (mmW) bands. 5G evolution, which will be actualized around 2025, replaces analog BF with hybrid or fully digital BF that improves mmW-band downlink and uplink transmission performances. In addition, cooperation technologies among of multiple base stations (BSs) are required to provide stable and reliable while cell switching in the mmW bands, even when mobile stations (MSs) travel at high speed. This paper verifies effectiveness of proposed BS cooperation technologies by both computer simulations and outdoor experimental trials. In this paper, three BSs using digital BF are cooperated to transmit signals while orthogonalizing two MSs that move at velocity of 90 km/h simultaneously. These evaluation shows that BS cooperation maintains the higher throughput in a wider area than non-BS cooperation.
面向高移动环境的毫米波基站协作技术
5G通信引入了在毫米波(mmW)频段使用大规模MIMO (M-MIMO)的模拟波束形成(BF)。5G演进将在2025年左右实现,用混合或全数字BF取代模拟BF,提高毫米波频段下行和上行传输性能。此外,需要多个基站(BSs)之间的合作技术,以便在毫米波频段内提供稳定可靠的小区交换,即使移动站(MSs)以高速行进。本文通过计算机仿真和室外实验验证了所提出的BS协同技术的有效性。本文采用数字BF技术,在正交化两个同时以90km /h速度运动的卫星的同时,利用3个卫星协同发射信号。这些评价表明,与非BS合作相比,BS合作在更大范围内保持了更高的吞吐量。
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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