基于QPSK的电信同步系统设计与仿真

I. Pyatin, J. Boiko, O. Eromenko
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引用次数: 1

摘要

信息信号通过通信信道传输时,伴随着加性高斯白噪声(AWGN)、工业干扰、大气噪声等的加入。此外,信号可以具有由涉及发射器的接收器的运动引起的额外频率和相移。本文研究了所列条件对通信信道中误差数依赖对信噪比的影响。它还探讨了通过使用基于锁相环(PLL)的符号同步来减少通信通道中信号传播条件影响的可能性。研究了早-晚同步误差检测器和Gardner同步误差检测器。在低信噪比下,该同步误差检测器比Gardner检测器效率高1.5 dB,且实现方案更简单。研究了在传输介质相移处采用正交相移键控(QPSK)调制的相干数字通信系统的能量效率。当传输介质相移30°时,非相干数字QPSK调制系统的能量效率降低10 dB。频移对通信系统的能量效率有很大的影响。当发生0.1 Hz频偏且缺少符号同步时,数字通信系统的能量效率降低10 dB。符号同步电路以0.1 Hz的频移将能量效率提高了7 dB。当频偏值增大时,相干通信的能量效率增大。引入2hz频移后,相干数字通信的效率提高了24db。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and Simulation of Synchronization Systems in Telecommunications with QPSK
The transmission of the information signal through the communication channel is accompanied by the addition of additive white Gaussian noise (AWGN), industrial interference, atmospheric noise, etc. In addition, the signal may have an additional frequency and phase shift caused by the movement of the receiver concerning the transmitter. The article is devoted to the study of the effect of the listed conditions on the errors number dependence in the communication channel on the signal-to-noise ratio (SNR). It also explores the possibilities of reducing the effect of signal propagation conditions in a communication channel by using symbolic synchronization, which is based on a phase-locked loop (PLL). The early-late-time and Gardner synchronization error detectors are investigated. The early-late-time synchronization error detector is 1.5 dB more efficient than the Gardner detector at low SNR and has a simpler implementation scheme. An energy efficiency study of a coherent digital communication system with quadrature phase-shift keying (QPSK) modulation at the phase shift in the propagation medium is performed. The energy efficiency of a non-coherent digital QPSK modulation system is reduced by 10 dB at the phase shift of 30° in the propagation medium. Frequency shifting has a significant impact on the energy efficiency of the communication system. The energy efficiency of the digital communication system decreases by 10 dB when 0.1 Hz frequency offset occurs and symbolic synchronization is missing. Symbol synchronization circuit increases the energy efficiency by 7 dB with a frequency shift of 0.1 Hz. When the value of frequency offset increases, the energy efficiency of coherent communication expands. The efficiency of coherent digital communication is increased by 24 dB with the introduction of frequency shift at 2 Hz.
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