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A Multilevel Coded Modulation Approach for Hexagonal Signal Constellation

机译:六边形信号星座的多级编码调制方法

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摘要

We propose a new coded modulation called hexagonal shell modulation (HSM). The HSM has a signal constellation composed of shell-like tiling of hexagons and thus has a lower peak-to-average power ratio (PAR) than a standard square quadrature amplitude modulation (QAM) with comparable bandwidth efficiency and minimum Euclidean distance. The main challenge is that HSM has a non-power-of-two number of constellation points, and thus assignment of binary information to HSM is not straightforward. We resolve this by applying a multilevel coded modulation (MLC) scheme where a ternary set partitioning combined with binary-input ternary-output (BITO) turbo codes is employed to fully exploit the property of the nonpower- of-two constellation points. Throughout this letter, we focus on an 18-ary HSM with the information rate of 3 bit/symbol as a specific example. It is shown that this system outperforms the standard square 16-QAM with the same rate when PAR is constrained.
机译:我们提出了一种称为六边形外壳调制(HSM)的新编码调制。 HSM具有由六边形的贝壳状拼贴组成的信号星座图,因此具有比标准平方正交幅度调制(QAM)更低的峰均功率比(PAR),具有可比的带宽效率和最小的欧几里德距离。主要挑战是HSM具有非2的幂数的星座点,因此将二进制信息分配给HSM并不容易。我们通过应用多级编码调制(MLC)方案来解决此问题,在该方案中,采用三态集划分与二进制输入三态输出(BITO)Turbo码相结合的方法来充分利用两个星座图非幂数的性质。在这封信中,我们将重点介绍18进制HSM,其信息速率为3位/符号。结果表明,在PAR受约束的情况下,该系统的性能优于标准方16-QAM。

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