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A high-sensitivity GPS receiver carrier-tracking loop design for high-dynamic applications

机译:用于高动态应用的高灵敏度Gps接收器载波跟踪环路设计

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摘要

© 2014, Springer-Verlag Berlin Heidelberg. In order to enhance the tracking performance of global positioning system (GPS) receivers for weak signal applications under high-dynamic conditions, a high-sensitivity and high-dynamic carrier-tracking loop is designed. The high-dynamic performance is achieved by aiding from a strapdown inertial navigation system (SINS). In weak signal conditions, a dynamic-division fast Fourier transform (FFT)-based tracking algorithm is proposed to improve the sensitivity of GPS receivers. To achieve the best performance, the tracking loop is designed to run either in the conventional SINS-aided phase lock loop mode (time domain) or in the frequency-domain-tracking mode according to the carrier-to-noise spectral density ratio detected in real time. In the frequency-domain-tracking mode, the proposed dynamic-division FFT algorithm is utilized to estimate and correct the error of the SINS aiding. Furthermore, the optimal values of the dynamic-division step and the FFT size are selected to maximize the signal-to-noise ratio gain. Simulation results demonstrate that the designed loop can significantly improve the tracking sensitivity and robustness for weak GPS signals without compromising the dynamic performance.
机译:©2014,施普林格出版社柏林海德堡。为了提高在高动态条件下微弱信号应用中的全球定位系统(GPS)接收机的跟踪性能,设计了一种高灵敏度,高动态的载波跟踪环路。借助捷联惯性导航系统(SINS)可以实现高动态性能。在弱信号条件下,提出了一种基于动态快速傅里叶变换的跟踪算法,以提高GPS接收机的灵敏度。为了获得最佳性能,根据在SINS中检测到的载波噪声频谱密度比,将跟踪环路设计为以常规的SINS辅助锁相环模式(时域)或频域跟踪模式运行。即时的。在频域跟踪模式下,所提出的动态划分FFT算法被用于估计和校正SINS辅助的误差。此外,选择动态划分步长和FFT大小的最佳值以最大化信噪比增益。仿真结果表明,设计的环路可以显着提高微弱GPS信号的跟踪灵敏度和鲁棒性,而不会影响动态性能。

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