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A 3-D Polarization Quadrature Amplitude Modulation method and constellation mapping

机译:3-D偏振正交幅度调制方法和星座图

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摘要

As a new three-dimensional (3-D) modulation, Polarization Quadrature Amplitude Modulation (PQAM) can be regarded as the combination of Pulse amplitude modulation (PAM) and Quadrature Amplitude Modulation (QAM) Modulation. It can better improve the digital communication efficiency and reduce the Symbol error rate (SER) of the system than one-dimensional or two-dimensional modulation scheme. How to design a feasible constellation is the most concerned problem of PQAM currently. This paper first studies the relationship between the SER theoretical value of PQAM and the distribution of M and N, proposes a new M, N allocation scheme. Secondly, a new and straightforward design method of constructing higher-level 3-D signal constellations, which can be matched with the PQAM, and the constellation can divided into three different structures according to the ary for PQAM. Finally, the simulation results show that: in PQAM system, the modulation scheme and the constellation mapping scheme are proposed in this paper which can effectively reduce the system SER and improve the anti-noise performance of the system.
机译:作为一种新的三维(3-D)调制,极化正交幅度调制(PQAM)可以看作是脉冲幅度调制(PAM)和正交幅度调制(QAM)调制的组合。与一维或二维调制方案相比,它可以更好地提高数字通信效率并降低系统的符号错误率(SER)。当前如何设计可行的星座图是PQAM最关注的问题。本文首先研究了PQAM的SER理论值与M和N分布之间的关系,提出了一种新的M,N分配方案。其次,一种新的,直接的设计方法,可以构造与PQAM匹配的高级3-D信号星座图,并且根据PQAM的格式,该星座图可以分为三种不同的结构。仿真结果表明:在PQAM系统中,提出了调制方案和星座映射方案,可以有效地减小系统SER,提高系统的抗噪声性能。

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