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Demodulation Method for Loran-C at Low SNR Based on Envelope Correlation–Phase Detection

机译:基于包络相关相检测的低SNR下Loran-C的解调方法

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摘要

Loran-C is the most important backup and supplement system for the global navigation satellite system (GNSS). However, existing Loran-C demodulation methods are easily affected by noise and skywave interference (SWI). Therefore, this article proposes a demodulation method based on Loran-C pulse envelope correlation–phase detection (EC–PD), in which EC has two implementation schemes, namely moving average-cross correlation and matched correlation, to reduce the effects of noise and SWI. The mathematical models of the EC, calculation of the signal-to-noise ratio (SNR) gain, and selection of the EC schemes are given. The simulation results show that compared with an existing method, the proposed method has clear advantages: (1) The demodulation SNR threshold under Gaussian channel is only −2 dB, a reduction of 12.5 dB; (2) The probability of the demodulated SNR threshold, being less than zero under the SWI environment, can reach 0.78, a 26-fold increase. The test results show that the average data availability of the proposed method is 3.3 times higher than that of the existing method. Thus, our demodulation method has higher engineering application value. This will improve the performance of the modern Loran-C system, making it a more reliable backup for the GNSS.
机译:Loran-C是全球导航卫星系统(GNSS)最重要的备份和补充系统。然而,现有的Loran-C解调方法容易受到噪声和天波干扰(SWI)的影响。因此,本文提出了一种基于Loran-C脉冲包络相关相检测(EC-PD)的解调方法,其中EC具有两个实现方案,即移动平均交叉相关性和匹配的相关性,以减少噪声的效果和匹配的相关性。 SWI。给出了EC的数学模型,给出了信噪比(SNR)增益的计算和EC方案的选择。仿真结果表明,与现有方法相比,所提出的方法具有明显的优点:(1)高斯通道下的解调SNR阈值仅为-2 dB,减少12.5 dB; (2)解调的SNR阈值的概率在SWI环境下少于零,可以达到0.78,增加26倍。测试结果表明,该方法的平均数据可用性比现有方法高3.3倍。因此,我们的解调方法具有更高的工程应用价值。这将提高现代Loran-C系统的性能,使其成为GNSS更可靠的备份。

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