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Structured Quasi-Gray labelling for Reed-Muller Grassmannian Constellations

机译:里德-穆勒·格拉斯曼星座的结构拟灰色标记

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The high-SNR capacity of a block-faded non-coherent channel can be achieved by a multi-dimensional Grassmannian modulation. This paper proposes an analytical quasi-Gray labelling for Reed-Muller Grassmannian constellations. The proposed labelling method enables to reduce the block error rate (BLER) of a system with error correction code, by minimizing the average Hamming distance between labels of neighboring modulation symbols. In particular, we first define an inherent generation label from which the Reed-Muller Grassmannian constellation is constructed, and show it fulfills a homogeneity property. Based on this, a bijective linear mapping between a quasi-Gray labelling and the former labelling is proposed, where the bijective linear mapping matrix is obtained by a low-complexity algorithm. Numerical results show that the proposed quasi-Gray labelling method can achieve 40% reduction of the average Hamming distance between neighboring modulation symbols compared to the generation label or random labelling. Finally, link-level simulation results further demonstrate that the proposed quasi-Gray labelling can effectively reduce the BLER.
机译:可以通过多维格拉斯曼调制来实现具有块衰落的非相干信道的高SNR容量。本文提出了一种针对里德-穆勒·格拉斯曼星座的解析准灰色标记。所提出的标记方法能够通过最小化相邻调制符号的标记之间的平均汉明距离来减少具有纠错码的系统的块错误率(BLER)。特别是,我们首先定义一个固有的世代标签,从中构造里德-穆勒·格拉斯曼星座,并证明其具有同质性。在此基础上,提出了准灰色标记与前者标记之间的双射线性映射,其中通过低复杂度算法获得了双射线性映射矩阵。数值结果表明,与生成标记或随机标记相比,所提出的准灰色标记方法可将相邻调制符号之间的平均汉明距离减少40%。最后,链路级仿真结果进一步表明,所提出的准灰色标记可以有效降低BLER。

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