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首页> 外文期刊>Communications Magazine, IEEE >Frequency-domain precoding for single carrier frequency-division multiple access - [topics in radio communications]
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Frequency-domain precoding for single carrier frequency-division multiple access - [topics in radio communications]

机译:单载波频分多址的频域预编码-[无线电通信中的主题]

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摘要

At present there is considerable interest in the use of single carrier frequency-division multiple access. This interest is justified by the inherent single carrier structure of the SC-FDMA scheme, which is more robust against phase noise and has a lower peak-to-average power ratio than orthogonal frequency-division multiple access. This consequently makes it more attractive for uplink transmission from low-cost devices with limited transmit power. SC-FDMA commonly makes use of frequency domain linear equalization in order to combat the frequency selectivity of the transmission channel. Frequency domain decision feedback equalization, composed of a frequency domain feed forward filter and a time domain feedback filter, outperforms LE due to its ability to cancel precursor echoes. Although these solutions suffer from error propagation, results show that DFE still offers a significant performance gain over conventional LE for uncoded SC-FDMA. In this article we show how precoding can be used on the uplink of the LTE standard to overcome the frequency selective nature of the radio channel. We propose a frequency domain implementation of Tomlinson- Harashima precoding and investigate the bit error rate and the PAPR performance for SCFDMA using ZF and MMSE THP.
机译:当前,对单载波频分多址的使用非常感兴趣。这种兴趣由SC-FDMA方案的固有单载波结构来证明,该结构比正交频分多址访问更能抵抗相位噪声,并且具有更低的峰均功率比。因此,这使其对于具有有限发射功率的低成本设备的上行链路传输更具吸引力。 SC-FDMA通常利用频域线性均衡来对抗传输信道的频率选择性。由频域前馈滤波器和时域反馈滤波器组成的频域决策反馈均衡由于其消除前驱回波的能力而胜过LE。尽管这些解决方案存在错误传播的问题,但结果表明,对于未编码的SC-FDMA,DFE仍比常规LE显着提高了性能。在本文中,我们展示了如何在LTE标准的上行链路上使用预编码,以克服无线电信道的频率选择性特性。我们提出Tomlinson-Harashima预编码的频域实现,并使用ZF和MMSE THP研究SCFDMA的误码率和PAPR性能。

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