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Greener Physical Layer Technologies for 6G Mobile Communications

机译:6G移动通信的绿色物理层技术

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摘要

Energy efficiency (EE) has been regarded as an essential design metric in 5G mobile communications. However, the massive antenna numbers, larger bandwidths, and higher density of base stations have been severely deteriorating the power consumption of 5G networks. In this article, the fundamental EE-spectrum efficiency (SE) joint design issues are thoughtfully considered. The relationships between EE and SE in single-input single-output (SISO), multiple-input multiple-output, and hybrid beamforming structures are first reviewed, where the increase of SE (EE) will unfortunately bring a reduction of EE (SE). To resolve this contradiction, a non-orthogonal multiple access (NOMA) scheme with energy-efficient user scheduling and resource allocation is investigated, which promises a simultaneous increase of EE and SE. Furthermore, a precoded waveform overlapping multiplexing scheme is presented, with significant improvements in EE and SE over the traditional Nyquist-criterion-based SISO systems. The waveform overlapping multiple access scheme is further proposed, which promises large performance improvements over the NOMA schemes discussed in 5G New Radio. The application of the waveform overlapping scheme in multiple-antenna systems is also investigated. Finally, the challenges of the waveform overlapping scheme and several other research topics are discussed. For sustainable development of the wireless communications industry, greener design in physical layer technologies should be second to none in the future 6G networks and beyond.
机译:能源效率(EE)被认为是5G移动通信中的基本设计度量。然而,大量天线数,较大的带宽和高密度基站的密度已经严重降低了5G网络的功耗。在本文中,仔细考虑了基本的EE-谱效率(SE)联合设计问题。首先回顾EE和SE在单输入单输出(SISO),多输入多输出和混合波束形成结构之间的关系,其中SE(EE)的增加将使EE(SE)降低。为了解决这一矛盾,研究了具有节能用户调度和资源分配的非正交多次访问(NOMA)方案,其承诺同时增加EE和SE。此外,提出了一种预编码波形重叠复用方案,在传统的奈奎斯特标准的SISO系统中,EE和SE的显着改进。进一步提出了波形重叠的多种接入方案,其对5G新无线电讨论的NOMA方案有很大的性能改进。还研究了波形重叠方案在多天线系统中的应用。最后,讨论了波形重叠方案和其他几个研究主题的挑战。对于无线通信行业的可持续发展,物理层技术的更环保设计应该是未来的6G网络和超越的第二个。

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