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

被引:36
作者
Xu, Rui [1 ,2 ]
Liu, Zhizhao [1 ,2 ]
Chen, Wu [1 ,2 ]
机构
[1] Hong Kong Polytech Univ, Dept Land Surveying & Geoinformat, Kowloon, Hong Kong, Peoples R China
[2] Hong Kong Polytech Univ, Dept Land Surveying & Geoinformat LSGI, Kowloon, Hong Kong, Peoples R China
关键词
Ionospheric amplitude scintillation; FLL-assisted PLL; In-phase pre-filtering; IONOSPHERIC SCINTILLATION; RECEIVER;
D O I
10.1007/s10291-014-0385-5
中图分类号
TP7 [遥感技术];
学科分类号
081102 ; 0816 ; 081602 ; 083002 ; 1404 ;
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 (S (4) = 0.6-1.0 and C/N-0 = 40 dB-Hz), FAP_IPF can maintain tracking in 6-9 cases even if its bandwidth Bn varies in a large range 7.5-15 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 S (4) = 1.11 and sigma (I center dot) = 1.49 rad, FAP_IPF can successfully maintain signal tracking within bandwidth Bn = 7.5-12.5 Hz, while both FAP and traditional PLL lose signal trackings.
引用
收藏
页码:263 / 276
页数:14
相关论文
共 28 条
[11]   Modeling the effects of ionospheric scintillation on GPS/Satellite-Based Augmentation System availability [J].
Conker, RS ;
El-Arini, MB ;
Hegarty, CJ ;
Hsiao, T .
RADIO SCIENCE, 2003, 38 (01) :1-1
[12]   IONOSPHERIC SCINTILLATION [J].
CRANE, RK .
PROCEEDINGS OF THE IEEE, 1977, 65 (02) :180-199
[13]  
Datta-Barua S., 2003, P 16 INT TECHN M SAT, P336
[14]   Analysis of strong ionospheric scintillation events measured by means of GPS signals at low latitudes during disturbed conditions [J].
Forte, B. .
RADIO SCIENCE, 2012, 47
[15]   Ionospheric scintillation monitoring and mitigation using a software GPS receiver [J].
Ganguly, S ;
Jovancevic, A ;
Brown, A ;
Kirchner, M ;
Zigic, S ;
Beach, T ;
Groves, KM .
RADIO SCIENCE, 2004, 39 (01)
[16]  
GWAL A, 2006, ADV SPACE RES SERIES, V38, P2361
[17]   Scintillation modeling for GPS-Wide Area Augmentation System receivers [J].
Hegarty, C ;
El-Arini, MB ;
Kim, T ;
Ericson, S .
RADIO SCIENCE, 2001, 36 (05) :1221-1231
[18]  
Humphreys E.D., 2005, ION GNSS 2005, P156
[19]   Data-Driven Testbed for Evaluating GPS Carrier Tracking Loops in Ionospheric Scintillation [J].
Humphreys, Todd E. ;
Psiaki, Mark L. ;
Ledvina, Brent M. ;
Cerruti, Alessandro P. ;
Kintner, Paul M., Jr. .
IEEE TRANSACTIONS ON AEROSPACE AND ELECTRONIC SYSTEMS, 2010, 46 (04) :1609-1623
[20]   Modeling the Effects of Ionospheric Scintillation on GPS Carrier Phase Tracking [J].
Humphreys, Todd E. ;
Psiaki, Mark L. ;
Kintner, Paul M., Jr. .
IEEE TRANSACTIONS ON AEROSPACE AND ELECTRONIC SYSTEMS, 2010, 46 (04) :1624-1637