Optimizing the Shape of Signals with Quadrature Amplitude Modulation According to the Criterion of Given Reduction Rate of Out-of-Band Emissions

S. Makarov, S. Zavjalov, A. Ovsyannikova
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Abstract

Introduction. The growth in the volume of information transmitted through communication channels leads to their significant congestion. Almost all methods conventionally used to increase the data transfer rate in given frequency bands have been exhausted. In this regard, it is of interest to use new approaches aimed at improving the spectral efficiency of radio engineering and telecommunication systems by applying optimal signals that make it possible to use the bandwidth reserves of transmission channels given by Shannon's theory.Aim. Improvement of the spectral efficiency of digital messaging systems by using signals with a compact spectrum and increased volume of the channel alphabet at the same time as minimizing energy losses.Materials and methods. When searching for optimal signals, the mathematical apparatus of communication theory and functional analysis, as well as the methods of calculus of variations, were used. The evaluation of bit error rate performance of the obtained optimal signals transmitted in a channel with additive white Gaussian noise was performed in the MatLab environment. Results. It was established that, in a channel with additive white Gaussian noise, optimal signals with a signal constellation size of 64 in the case of quadrature amplitude-phase modulation provide an energy gain of more than 1 dB relative to signals obtained by narrowband filtering under the conditions of uncontrolled intersymbol interference. Optimal signals were shown to provide for an energy gain of 4.9 dB with respect to signals based on narrow-band filtering at a fixed spectral efficiency of 7 (bit/s)/Hz.Conclusion. The paper proposes a method for improving the spectral efficiency of quadrature signals with amplitudephase modulation, based on the use of optimal pulse shapes obtained as a result of solving an optimization problem. The optimization problem was solved according to the criterion of minimizing out-of-band emissions with the constraint on bit error rate performance in case of amplitude-phase modulation. The energy and spectral efficiency of signals with optimal pulse shapes and signals based on narrow-band filtering were compared.
根据给定带外发射降低率的准则优化正交调幅信号的形状
介绍。通过通信渠道传输的信息量的增长导致了通信渠道的严重堵塞。在给定频带中,几乎所有用于提高数据传输率的传统方法都已用尽。在这方面,使用旨在提高无线电工程和电信系统频谱效率的新方法是有意义的,方法是应用最优信号,使利用香农理论给出的传输信道的带宽储备成为可能。通过使用频谱紧凑的信号和增加信道字母的体积,同时尽量减少能量损失,从而提高数字通信系统的频谱效率。材料和方法。在寻找最优信号时,使用了通信理论和泛函分析的数学工具以及变分法。在MatLab环境下,对得到的最优信号在加性高斯白噪声信道中传输的误码率性能进行了评价。结果。在加性高斯白噪声信道中,经正交幅相调制的信号星座大小为64的最优信号,在码间干扰不受控制的情况下,相对于窄带滤波获得的信号,能量增益大于1 dB。在7 (bit/s)/ hz的固定频谱效率下,与基于窄带滤波的信号相比,最优信号可提供4.9 dB的能量增益。本文提出了一种提高幅相调制正交信号频谱效率的方法,该方法基于求解优化问题得到的最优脉冲形状。在幅相位调制条件下,以带外发射最小为优化准则,并对误码率性能进行约束。比较了最佳脉冲形状信号和窄带滤波信号的能量效率和频谱效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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