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Low Complexity Adaptive Demapper for 2-D Non-Uniform Constellations

机译:用于二维非均匀星座图的低复杂度自适应解映射器

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In this paper, a novel demapper for 2-D non-uniform constellations (2D-NUCs) is proposed, exploiting the characteristics of these constellations. It represents the combination of two underlying demapping techniques targeting the ATSC 3.0 compliant OFDM transceiver. On the one hand, for low code rates, we define a metric to perform condensed demapping. On the other hand, for high code rates, adaptive sub-region demapping is proposed. In this paper, a combination of both demapping methods is designed showing comparable performance to the classical ML demapper. The gap does not exceed 0.1 dB for all code rates of the ATSC 3.0 standard. Higher complexity reduction, from 79.2% to 95.4%, than state of art 2D-NUC demappers is obtained for 2D-256NUCs. These results are validated for ideal and non-ideal channel state information over additive white noise Gaussian and Rayleigh independently and identically distributed channels. Results are extended to 2D-1kNUCs and 2D-4kNUCs showing demapping complexity reduction from 96% to 99.7% with a negligible impact on performance.
机译:本文提出了一种新颖的二维非均匀星座图(2D-NUC)去映射器,它利用了这些星座图的特性。它代表针对ATSC 3.0兼容OFDM收发器的两种基础解映射技术的组合。一方面,对于低码率,我们定义了一个度量来执行压缩解映射。另一方面,对于高码率,提出了自适应子区域解映射。在本文中,设计了两种解映射方法的组合,显示了与传统ML解映射器相当的性能。对于ATSC 3.0标准的所有编码率,间隙不超过0.1 dB。对于2D-256NUC,获得了比现有技术2D-NUC解映射器更高的复杂度降低,从79.2%降低到95.4%。这些结果已针对独立和均匀分布的加性白噪声高斯和瑞利上的理想和非理想信道状态信息进行了验证。结果扩展到2D-1kNUC和2D-4kNUC,显示解映射复杂度从96%降低到99.7%,对性能的影响可以忽略不计。

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