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Improved FLL-assisted PLL with in-phase pre-filtering to mitigate amplitude scintillation effects

机译:具有同相预滤波功能的改进的FLL辅助PLL,以减轻幅度闪烁效应

摘要

Ionospheric scintillation can increase carrier tracking error of the Global Positioning System (GPS) receiver and may lead to loss of lock under serious conditions. It is a threat to reliable and accurate GPS applications. Kalman filter-based phase lock loop, frequency lock loop-assisted phase lock loop (FAP) and vector-based tracking algorithms are considered as solutions to improve the robustness of carrier tracking. However, their performances are sensitive to loop parameters: noise bandwidth and integration period. We analyze the effects of amplitude scintillation on inputs signals, in-phases and quadra-phases, of carrier tracking loop. Analysis result shows amplitude scintillations affect in-phase much more seriously than quadra-phase. Based on the results, the FAP with in-phase pre-filtering (FAP_IPF) method is proposed to mitigate the amplitude scintillation effect on in-phase. IPF is placed before discriminators of FAP to restrict the in-phase variation within a reasonable range. The tracking loop FAP_IPF is tested using both simulated and real-world GPS intermediate frequency (IF) data with amplitude scintillation and compared to the traditional third-order PLL and FAP without IPF. The tracking results show that FAP_IPF is more robust than FAP and traditional PLL. In 10 simulation scintillation cases (S4?=?0.6¡V1.0 and C/N0?=?40?dB¡VHz), FAP_IPF can maintain tracking in 6¡V9 cases even if its bandwidth Bn varies in a large range 7.5¡V15?Hz. FAP has the best performance at bandwidth Bn?=?10?Hz, but its performance is degraded dramatically at other bandwidths. PLL shows the worst performance among the three algorithms. In real-world GPS IF data with real-world scintillation S4?=?1.11 and £m??=?1.49?rad, FAP_IPF can successfully maintain signal tracking within bandwidth Bn?=?7.5¡V12.5?Hz, while both FAP and traditional PLL lose signal trackings.
机译:电离层闪烁会增加全球定位系统(GPS)接收器的载波跟踪误差,在严重的情况下可能导致失锁。这对可靠,准确的GPS应用构成威胁。基于卡尔曼滤波器的锁相环,频率锁相辅助锁相环(FAP)和基于矢量的跟踪算法被视为提高载波跟踪鲁棒性的解决方案。但是,它们的性能对环路参数很敏感:噪声带宽和积分周期。我们分析了幅度闪烁对载波跟踪环路的输入信号(同相和四相)的影响。分析结果表明,幅度闪烁对同相的影响比对四相的影响大得多。在此基础上,提出了采用同相预滤波的FAP(FAP_IPF)方法,以减轻振幅闪烁对同相的影响。 IPF放在FAP鉴别符之前,以将同相变化限制在合理范围内。跟踪环路FAP_IPF使用带有幅度闪烁的模拟和现实世界GPS中频(IF)数据进行了测试,并与不带IPF的传统三阶PLL和FAP进行了比较。跟踪结果表明,FAP_IPF比FAP和传统PLL更健壮。在10个模拟闪烁情况下(S4?=?0.6?V1.0和C / N0?=?40?dB?VHz),即使FAP_IPF的带宽Bn在7.5?的大范围内变化,也可以保持跟踪。 V15?Hz。 FAP在带宽Bn?=?10?Hz时具有最佳性能,但在其他带宽下其性能却大大降低。 PLL在三种算法中表现最差。在具有真实闪烁S4?=?1.11和£m ?? =?1.49?rad的真实GPS IF数据中,FAP_IPF可以成功地将信号跟踪保持在带宽Bn?=?7.5?V12.5?Hz内,而两者FAP和传统PLL丢失信号跟踪。

著录项

  • 作者

    Xu R; Liu Z; Chen W;

  • 作者单位
  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 eng
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