Experimental assessment of 5G-candidate modulation schemes at extreme speeds

J. Rodríguez-Piñeiro, M. Lerch, Tomás Domínguez-Bolaño, J. García-Naya, S. Caban, L. Castedo
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引用次数: 5

Abstract

The radio access technology for railway communications is expected to migrate from GSM for Railways (GSM-R) to fourth generation (4G). Recently, considerable attention has been devoted to high-speed trains since this particular environment poses challenging problems in terms of performance simulation and measurement. In order to considerably decrease the cost and complexity of high-speed measurement campaigns, we have proposed a technique to induce effects caused by highly-time varying channels on multicarrier signals by conducting measurements at low speeds. This technique has been proved to be accurate for the cases of WiMAX and Long Term Evolution (LTE) standardized waveforms. In this work, we evaluate experimentally the performance of this technique by employing modulation schemes proposed for fifth generation (5G) systems. More specifically, we compare the performance obtained by transmitting Filter Bank Multicarrier (FBMC) schemes with two different prototype filters at different velocities in a controlled measurement environment.
极限速度下5g候选调制方案的实验评估
铁路通信的无线接入技术有望从GSM- r向第四代(4G)过渡。由于高速列车的特殊环境在性能模拟和测量方面提出了具有挑战性的问题,因此近年来,人们对高速列车的关注越来越多。为了大大降低高速测量活动的成本和复杂性,我们提出了一种技术,通过在低速下进行测量来诱导高时变信道对多载波信号的影响。该技术已被证明是准确的WiMAX和长期演进(LTE)标准波形的情况下。在这项工作中,我们通过采用第五代(5G)系统提出的调制方案来实验评估该技术的性能。更具体地说,我们比较了两种不同原型滤波器在受控测量环境下以不同速度传输滤波器组多载波(FBMC)方案所获得的性能。
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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