多项式相位调制信号的符号解码空时分组编码

Omar Granados, J. Andrian
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引用次数: 2

摘要

在单输入单输出(SISO)通信系统中,在加性高斯白噪声和衰落信道下,与传统调制格式相比,多项式相位调制(PPM)提供了更好的误码率性能。在本文中,我们评估了使用PPM作为调制格式的两个和四个发射天线系统的性能。在这两种情况下,我们都采用全速率空时分组码,以便利用多径信道。对于两个发射天线,我们使用Alamouti提出的正交空时分组码(OSTBC),并通过使用最大似然(ML)、次优ML (S-ML)和高阶模糊函数(HAF)三种不同的方法估计PPM信号的相位系数来进行符号智能解码。在四个发射天线的情况下,我们采用Jafarkhani提出的全速率准ostbc (QOSTBC)。然后,为了执行低复杂度的符号智能解码,我们找到了Jafarkhani方案的解耦矩阵,并应用了一种称为准零强迫(ZF)的技术。之后,估计PPM信号参数,就像在双天线情况下使用ML、S-ML和HAF一样。我们表明,使用PPM和ML的系统优于使用M-ary PSK作为调制格式的OSTBC和ZF-QOSTBC。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Space-time block coding with symbol-wise decoding for polynomial phase modulated signals
Polynomial phase modulation (PPM) has been shown to provide improved error rate performance with respect to conventional modulation formats under additive white Gaussian noise and fading channels in single-input single-output (SISO) communication systems. In this paper, we evaluate the performance of systems with two and four transmit antennas using PPM as the modulation format. In both cases we employ full-rate space-time block codes in order to take advantage of the multipath channel. For two transmit antennas, we use the orthogonal space-time block code (OSTBC) proposed by Alamouti and perform symbol-wise decoding by estimating the phase coefficients of the PPM signal using three different methods: maximum-likelihood (ML), sub-optimal ML (S-ML), and the high-order ambiguity function (HAF). In the case of four transmit antennas, we employ the full-rate quasi-OSTBC (QOSTBC) proposed by Jafarkhani. Then, in order to perform low-complexity symbol-wise decoding, we find a decoupling matrix for the Jafarkhani scheme and apply a technique known as quasi-zero forcing (ZF). After that, the PPM signal parameters are estimated just as in the two-antenna case using ML, S-ML, and HAF. We show that the proposed systems using PPM and ML outperform OSTBC and ZF-QOSTBC using M-ary PSK as their modulation format.
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