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Development of a Multi-Frequency Adaptive Kalman Filter-Based Tracking Loop for Ionospheric Scintillation Monitoring Receiver

机译:用于电离层闪烁监测接收机的基于多频自适应卡尔曼滤波器的跟踪环的研制

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摘要

Rapid and random temporal fluctuations in amplitude and phase of GNSS signals caused when they are propagating through localized irregularities in electron density of the ionosphere are called amplitude and phase scintillation, respectively. Scintillation affects signal acquisition, operation of PLLs (Phase Lock Loops) while tracking, and can lead to carrier cycle slips, navigation data bit errors and/or complete loss of lock. The loss of tracking may affect the availability and accuracy of receiver positions for short period of time, when less than four satellites are available for position computation. The use of carrier phase measurements with cycle slips and discontinuities, under strong scintillation, is a challenge for scintillation monitoring applications. Monitoring the ionosphere using GNSS signals is an important application in space-weather monitoring to understand scintillation effects on receiver operation and its performance. This paper analyzes the Kalman Filter (KF) based tracking performance of combined GPS L1, L2C and L5 signal tracking by taking advantage of the dispersive nature of the ionosphere. It also incorporates an adaptive algorithm for combined L1-L2C-L5 KF tracking in which the KF selftunes the covariance matrix based on scintillation indices. To evaluate performance of the combined KF based tracking algorithm, its probability of loss of lock and tracking jitter are compared with that of single frequency KF based tracking algorithm for both adaptive and non-adaptive cases.
机译:当它们通过电离层的电子密度的局部不规则传播时,GNSS信号的幅度和相位的快速和随机时间波动分别称为幅度和相闪烁。闪烁影响信号采集,PLL的操作(相位锁定循环),同时跟踪,并且可以导致载波循环滑动,导航数据位错误和/​​或锁定丢失。当少于四个卫星可用于位置计算时,跟踪的丢失可能会影响短时间内的接收器位置的可用性和精度。在强闪烁下使用循环滑动和不连续性的载体相测量是对闪烁监测应用的挑战。使用GNSS信号监测电离层是空间天气监测中的重要应用,以了解对接收器操作的闪烁效果及其性能。本文通过利用电离层的分散性,分析了基于GPS L1,L2C和L5信号跟踪的基于卡尔曼滤波器(KF)跟踪性能。它还包括用于组合L1-L2C-L5 KF跟踪的自适应算法,其中KF基于闪烁索引自行自行协方差矩阵。为了评估基于KF组合的跟踪算法的性能,将其锁定和跟踪抖动损耗的概率与自适应和非自适应外的单频KF跟踪算法进行了比较。

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