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Performance Analysis of GPS Receivers in Non-Gaussian Noise Incorporating Precorrelation Filter and Sampling Rate

机译:包含预相关滤波器和采样率的非高斯噪声中GPS接收机的性能分析

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Global positioning system (GPS) receivers find growing applications in indoor and outdoor communication environments, including urban and rural areas. Interference and noise sources for GPS receivers may assume Gaussian or non-Gaussian distributions. The GPS receiver performance under Gaussian additive noise has been studied. Non-Gaussian noise may equally contaminate the GPS satellite signals and disturb the receiver delay lock loops (DLL), producing significant tracking errors. These sources include impulsive noise, ultra-wideband (UWB) signals, and impulse and noise radar signals for target tracking and indoor imaging applications. This paper considers non-Gaussian noise of finite variance and examines its effect on the discriminator outputs for the commercial GPS receiver that uses the coarse acquisition (C/A) code. The correlator noise output components are produced from the correlation between the noise sequence and the early, late, and punctual reference C/A code. Due to the long time averaging, which is characteristic of the GPS correlation loops, these components assume Gaussian distributions. The discriminator tracking error variance is derived, incorporating the effect of noise, the front-end precorrelation filter, and the sampling rate.
机译:全球定位系统(GPS)接收器在室内和室外通信环境(包括城市和农村地区)中发现了越来越多的应用。 GPS接收机的干扰和噪声源可能采用高斯或非高斯分布。研究了高斯加性噪声下的GPS接收机性能。非高斯噪声可能同样会污染GPS卫星信号并扰乱接收机延迟锁定环(DLL),从而产生明显的跟踪误差。这些源包括脉冲噪声,超宽带(UWB)信号以及用于目标跟踪和室内成像应用的脉冲和噪声雷达信号。本文考虑了具有有限方差的非高斯噪声,并研究了其对使用粗采集(C / A)码的商用GPS接收机的鉴别器输出的影响。相关器噪声输出分量由噪声序列与早期,晚期和守时参考C / A码之间的相关性产生。由于长时间平均(这是GPS相关环路的特征),因此这些组件采用高斯分布。得出鉴别器跟踪误差方差,其中包含了噪声,前端预相关滤波器和采样率的影响。

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