OPTIMAL SIGNAL-CODE CONSTRUCTIONS FOR INCREASE EFFICIENCY OF 5G AND 6G MOBILE INFOCOMMUNICATION RADIO SYSTEMS

M. Vasylkivskyi, Olha Boldyreva, Ganna Vargatyuk, Budash Myhailo
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Abstract

The article discusses methods of increasing the efficiency of information communication radio systems of mobile communication, which includes increasing spectral efficiency and energy efficiency when used for telecommunication radio equipment. A comparison of block error coefficient values for f-OFDM, W-OFDM and OFDM methods with mixed numerology of uplink and downlink subscriber channels of access to information resources of the telecommunications network was made. As a result of the study of compression methods using several carriers, the dominant compression method for mobile communication systems, in particular, the CP-OFDM method due to its high efficiency of spectrum use, scalability and flexibility due to the introduction of a cyclic prefix, has been determined. It is proved that the CP-OFDM compression method is free from the Doppler range shift problem, thus the range and Doppler shift estimations can be considered as independent tasks in CP-OFDM. In addition, CP-OFDM parameters such as carrier distance, guard interval size, frame length, and pilot shape can be tailored to optimize the performance and robustness of detection and data transmission. However, such advantages are based on perfect synchronization (time and frequency) between the transmitter and receiver – although perfect synchronization may not be possible, especially for bistatic scanning, where the transmitter and receiver of the scan signal are not adjacent. In this case, the cyclic prefix may not provide any advantage for quality scanning, and multiple unprefixed waveforms may be considered. The main disadvantage of rejecting the prefix is the difficulty of data detection (due to intersymbol interference), which must be eliminated. Another important challenge for scanning, where energy efficiency is extremely important, is the large PAPR of multi-carrier (prefixed or unprefixed) signals. Single-carrier compression methods, which are based on the expansion of the code area of common radar signals and communication, in which the radar characteristics are affected by sequence autocorrelation, have been studied. However, the long spreading code, which leads to good autocorrelation, reduces the spectrum utilization efficiency for communication systems. In this case, the estimation of the Doppler effect is not trivial and requires more complex algorithms. The justification of the choice of the signal modulation scheme in 5/6G radio systems has been made.
优化信号码结构,提高5g和6g移动信息通信无线电系统的效率
本文讨论了提高移动通信信息通信无线电系统效率的方法,包括提高用于电信无线电设备的频谱效率和能量效率。对通信网络信息资源接入上行、下行用户信道混合数字情况下的f-OFDM、W-OFDM和OFDM分组误差系数值进行了比较。通过对多种载波压缩方法的研究,确定了移动通信系统的主流压缩方法,特别是CP-OFDM方法,由于其频谱利用效率高,由于引入循环前缀而具有可扩展性和灵活性。证明了CP-OFDM压缩方法不存在多普勒距离漂移问题,因此在CP-OFDM中,距离估计和多普勒频移估计可以看作是独立的任务。此外,CP-OFDM的载波距离、保护间隔大小、帧长度和导频形状等参数可以定制,以优化检测和数据传输的性能和鲁棒性。然而,这些优势是基于发射器和接收器之间的完美同步(时间和频率)-尽管完美同步可能是不可能的,特别是对于双基地扫描,其中扫描信号的发射器和接收器不相邻。在这种情况下,循环前缀可能不会为高质量扫描提供任何优势,并且可以考虑多个无前缀波形。拒绝前缀的主要缺点是数据检测困难(由于符号间干扰),必须消除。扫描的另一个重要挑战是多载波(带前缀或不带前缀)信号的大PAPR,其中能量效率非常重要。研究了基于普通雷达信号码域扩展和通信特性受序列自相关影响的单载波压缩方法。但是,由于长扩频码具有良好的自相关性,降低了通信系统的频谱利用效率。在这种情况下,多普勒效应的估计不是微不足道的,需要更复杂的算法。对5/6G无线电系统中信号调制方案的选择进行了论证。
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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