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Resource block filtered-OFDM as a multi-carrier transmission scheme for 5G

机译:资源块过滤器-OFDM作为5G的多载波传输方案

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摘要

The fifth generation of mobile communications, which has higher requirements for data rate and spectral efficiency, will be a key technology for future wireless communication systems. Therefore, based on the current spectral division, the use of idle spectra of low frequency bands is needed to address 5G mobile scenarios. The side lobe in frequency division multiplexing (OFDM), which is widely adopted in 4G, is so high that it produces adjacent channel interference. The addition a cyclic prefix is necessary to resolve such an interference problem; however, this leads to spectral efficiency degradation. Therefore, this study presents a new multi-carrier transmission technique for future wireless communication systems. Intuited by the filter bank based multi-carrier (FBMC) and the universal filtered multi-carrier (UFMC), we proposed band resource block filtered orthogonal frequency division multiplexing (RB F-OFDM). RB F-OFDM retains the advantages of OFDM; moreover, its sideband has rapid attenuation, its energy is more concentrated, and it can avoid inter-carrier interference (ICI). When adjacent channel interference exists, the performance of RB F-OFDM is better than that of OFDM and UFMC. (C) 2017 Elsevier Ltd. All rights reserved.
机译:第五代移动通信,对数据速率和频谱效率的要求具有更高的要求,将是未来无线通信系统的关键技术。因此,基于当前光谱划分,需要使用低频带的空闲光谱来解决5G移动方案。在4G中广泛采用的频分复用(OFDM)的侧瓣非常高,即它产生相邻的信道干扰。添加循环前缀是解决这种干扰问题的必要条件;然而,这导致光谱效率降解。因此,该研究提出了一种用于未来无线通信系统的新的多载波传输技术。由基于滤波器组的多载波(FBMC)和通用过滤的多载波(UFMC)引用,我们提出了频段资源块滤波过正交频分复用(RB F-OFDM)。 RB F-OFDM保留OFDM的优点;此外,其边带衰减,其能量更集中,可以避免载波间干扰(ICI)。存在相邻信道干扰时,RB F-OFDM的性能优于OFDM和UFMC的性能。 (c)2017 Elsevier Ltd.保留所有权利。

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