Scientific and Engineering Proposals for Improving the Noise Immunity of Receiving Multi-Position Signals in Channels with Variable Parameters

M. R. Bibarsov, S. Dvornikov, A. F. Kryachko, A. Pshenichnikov
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Abstract

Introduction. An important task faced by the developers of modern telecommunication systems consists in increasing the noise immunity of signal reception in channels with variable parameters. Thus, the communication lines of DVB-T2, DVB-S, and DVB-S2/S2 standards widely apply signal structures (SS) of multi-position quadrature amplitude modulation (M-QAM). However, an analysis of scientific publications shows that the random nature of the phase change of the transformed signal constellation leads to a loss of noise immunity of the M-QAM signals. Engineering solutions for the effective reception of such signals are lacking. The proposed block diagram of a device for receiving quadrature amplitude signals and the developed operation algorithm for an amplitude-phase detector allow random phase changes to be considered and reduced.Aim. Development of scientific and engineering proposals to improve the efficiency of receiving M-QAM signals in radio channels with random phase changes.Materials and methods. The study was conducted using the methods of noise immunity research, as well as communication theory and signal theory.Results. A block diagram of a device for receiving quadrature amplitude signals and an operation algorithm for an amplitude-phase detector were proposed, which allow random phase changes to be considered and compensated for. Scientific and engineering proposals were formulated to improve the noise immunity of M-QAM reception in channels with variable parameters.Conclusion. The developed scientific and engineering proposals for increasing the noise immunity of multi-position quadrature signals in channels with variable parameters substantiate both the feasibility of using a transformed SS M-QAM with improved energy characteristics, as well as the application of the developed receiving device for processing quadrature amplitude signals and the operation algorithm of an amplitude-phase detector. The results obtained make it possible to perform demodulation with simultaneous compensation of phase distortions to increase the noise immunity of M-QAM signal reception.
提高在参数可变信道中接收多位置信号的抗噪能力的科学和工程建议
引言现代电信系统开发人员面临的一项重要任务是提高参数可变信道中信号接收的抗噪能力。因此,DVB-T2、DVB-S 和 DVB-S2/S2 标准的通信线路广泛采用了多位置正交幅度调制(M-QAM)的信号结构(SS)。然而,对科学出版物的分析表明,变换后信号星座相位变化的随机性导致 M-QAM 信号的抗噪能力下降。目前还缺乏有效接收此类信号的工程解决方案。拟议的正交振幅信号接收设备框图和开发的振幅-相位检测器操作算法可以考虑并减少随机相位变化。制定科学和工程建议,以提高在具有随机相位变化的无线电信道中接收 M-QAM 信号的效率。研究采用了噪声抗扰度研究方法以及通信理论和信号理论。提出了接收正交振幅信号的设备框图和振幅相位检测器的操作算法,从而可以考虑和补偿随机相位变化。提出了在参数可变的信道中提高 M-QAM 接收抗噪能力的科学和工程建议。为提高多位置正交信号在参数可变信道中的抗噪能力而提出的科学和工程建议,证明了使用具有改进能量特性的变换 SS M-QAM 的可行性,以及所开发的处理正交振幅信号的接收设备和振幅相位检测器操作算法的应用。所获得的结果使解调与相位失真同步补偿成为可能,从而提高了 M-QAM 信号接收的抗噪能力。
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