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Performance of soft-decision linear receivers for spatial-multiplexing FBMC/OQAM

机译:用于空间复用FBMC / OQAM的软判决线性接收机的性能

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With the increasing demand for mobile data traffic, enhanced frequency localized transmissions are considered for the generation of wireless networks to come. Filter Bank Multi-Carrier modulation, with the use of Offset-QAM, proves to be an interesting candidate to satisfy those spectrum constraints. Contrary to CP-OFDM, FBMC does not use any CP. Its spectral efficiency is improved but it also weakens the transmissions over highly frequency selective channels. Complex detection stage based on precoding or multi-tap equalization is thus necessary to prevent orthogonality losses. Another solution can be the use of the Frequency-Spreading scheme which improves the frequency resolution. In this paper, we propose to extend probabilistic decoding to linear FBMC receivers. The performances of the two common FBMC receiver structures, PolyPhase Network and Frequency-Spreading, are assessed over frequency-selective LTE channel models. The analytical formulae of the likelihood metrics are also derived.
机译:随着对移动数据业务的需求的增加,考虑了增强的频率局部传输以用于即将到来的无线网络的产生。通过使用Offset-QAM,滤波器组多载波调制被证明是满足这些频谱约束的有趣选择。与CP-OFDM相反,FBMC不使用任何CP。它的频谱效率得到了改善,但同时也削弱了高频选择性信道上的传输。因此,需要采用基于预编码或多抽头均衡的复杂检测级来防止正交性损失。另一个解决方案可以是使用频率扩展方案,该方案可以改善频率分辨率。在本文中,我们建议将概率解码扩展到线性FBMC接收器。通过频率选择性LTE信道模型评估了两种常见的FBMC接收器结构(多相网络和扩频)的性能。还推导了似然度量的解析公式。

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