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An improved two-step time-parallel semi-bit method for GPS weak signal acquisition

机译:一种改进的GPS弱信号采集的两步时间并行半比特方法

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The Global Positioning System (GPS) receivers often encounter problems of code Doppler and navigation bit sign transitions which decrease output SNR of acquisition stage. The traditional methods of code phase search acquisition with post-correlation detections for weak signal acquisition fail to enhance the number of integrations between the received GPS signal and local Coarse/Acquisition (C/A) code; especially, when the code Doppler and navigation bit sign transitions occur. We propose an improved two-step time-parallel semi-bit acquisition method to overcome the navigation bit sign transition and the code Doppler limitations. This proposed method compensates the navigation bit sign transitions and code Doppler in the first and second step, respectively. Also, Fast Fourier Transform (FFT) is applied to increase the speed of code delay search. Experimental results demonstrate that the proposed method outperforms compared to the conventional methods such as coherent, non-coherent, differential coherent detection, coherent time parallel, non-coherent time parallel, differential time parallel, and improved semi-bit compensation. In contrary to the other conventional methods, the presented method can detect at least four satellites with 40.8% less SNR. (C) 2020 Elsevier GmbH. All rights reserved.
机译:全球定位系统(GPS)接收器经常遇到代码多普勒和导航位符号转换的问题,该转换减少了采集阶段的输出SNR。传统的代码相位搜索方法与弱信号采集的相关性检测未能增强接收的GPS信号和局部粗/采集(C / A)代码之间的集成次数;特别是,当代码多普勒和导航位符号转换发生时。我们提出了一种改进的两步时间 - 并行半比特采集方法来克服导航比特符号转换和代码多普勒限制。该提出的方法分别补偿了第一和第二步骤中的导航位符号转换和代码多普勒。此外,应用快速傅里叶变换(FFT)以提高代码延迟搜索的速度。实验结果表明,与诸如相干,非相干,差分相干检测,相干时间平行,非相干时间平行,差分时间平行的相干时间平行,并且改进的半比特补偿,所提出的方法优于常规方法。与其他常规方法相反,所示的方法可以检测至少四颗颗卫星,SNR少40.8%。 (c)2020 Elsevier GmbH。版权所有。

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