Extra-Wide Lane Ambiguity Resolution and Validation for a Single Epoch Based on the Triple-Frequency BeiDou Navigation Satellite System

The ambiguity resolution (AR) and validation of the global navigation satellite system (GNSS) have been challenging tasks for some decades. Considering the reliability problem of extra-wide-lane (EWL) ambiguity in the triple-carrier ambiguity resolution (TCAR), a method for validating the reliabilit...

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Main Authors: Jian Deng, Aiguo Zhang, Nenghui Zhu, Fuyang Ke
Format: Article
Language:English
Published: MDPI AG 2020-03-01
Series:Sensors
Subjects:
bds
Online Access:https://www.mdpi.com/1424-8220/20/5/1534
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spelling doaj-e6b55fac164c4c3d90296ca0992ec88b2020-11-25T02:04:20ZengMDPI AGSensors1424-82202020-03-01205153410.3390/s20051534s20051534Extra-Wide Lane Ambiguity Resolution and Validation for a Single Epoch Based on the Triple-Frequency BeiDou Navigation Satellite SystemJian Deng0Aiguo Zhang1Nenghui Zhu2Fuyang Ke3Department of Surveying and Remote Sensing Engineering, Xiamen University of Technology, Xiamen 361024, ChinaDepartment of Surveying and Remote Sensing Engineering, Xiamen University of Technology, Xiamen 361024, ChinaSchool of Applied Mathematics, Xiamen University of Technology, Xiamen 361024, ChinaSchool of Remote Sensing and Geomatics Engineering, Nanjing University of Information Science and Technology, Nanjing 210044, ChinaThe ambiguity resolution (AR) and validation of the global navigation satellite system (GNSS) have been challenging tasks for some decades. Considering the reliability problem of extra-wide-lane (EWL) ambiguity in the triple-carrier ambiguity resolution (TCAR), a method for validating the reliability of the EWL ambiguity using a single epoch was proposed for the BeiDou Navigation Satellite System (BDS). For the initial EWL ambiguity, obtained using a rounding estimator with a geometry-free (GF) model, the double-difference ionospheric delay was first estimated to construct a relative positioning model with an initial fixed ambiguity. Second, based on the theory of gross error detection and the AR characteristics of EWL, the second-best ambiguity candidate was constructed. Finally, among the two sets of ambiguities, the one with the smaller posterior variance was taken as the reliable ambiguity. The study showed that, for a single epoch, when only one or two satellites had incorrect ambiguities, the AR success rate after ambiguity validation and correction could reach 100% for medium baselines. For long baselines, due to the increase of atmospheric error, the validation was affected to some extent. However, the AR success rates for two long baselines increased from 96.82% and 98.44% to 98.80% and 99.67%, respectively.https://www.mdpi.com/1424-8220/20/5/1534ewl ambiguity resolutionreliabilitytriple-frequencygross error detectbds
collection DOAJ
language English
format Article
sources DOAJ
author Jian Deng
Aiguo Zhang
Nenghui Zhu
Fuyang Ke
spellingShingle Jian Deng
Aiguo Zhang
Nenghui Zhu
Fuyang Ke
Extra-Wide Lane Ambiguity Resolution and Validation for a Single Epoch Based on the Triple-Frequency BeiDou Navigation Satellite System
Sensors
ewl ambiguity resolution
reliability
triple-frequency
gross error detect
bds
author_facet Jian Deng
Aiguo Zhang
Nenghui Zhu
Fuyang Ke
author_sort Jian Deng
title Extra-Wide Lane Ambiguity Resolution and Validation for a Single Epoch Based on the Triple-Frequency BeiDou Navigation Satellite System
title_short Extra-Wide Lane Ambiguity Resolution and Validation for a Single Epoch Based on the Triple-Frequency BeiDou Navigation Satellite System
title_full Extra-Wide Lane Ambiguity Resolution and Validation for a Single Epoch Based on the Triple-Frequency BeiDou Navigation Satellite System
title_fullStr Extra-Wide Lane Ambiguity Resolution and Validation for a Single Epoch Based on the Triple-Frequency BeiDou Navigation Satellite System
title_full_unstemmed Extra-Wide Lane Ambiguity Resolution and Validation for a Single Epoch Based on the Triple-Frequency BeiDou Navigation Satellite System
title_sort extra-wide lane ambiguity resolution and validation for a single epoch based on the triple-frequency beidou navigation satellite system
publisher MDPI AG
series Sensors
issn 1424-8220
publishDate 2020-03-01
description The ambiguity resolution (AR) and validation of the global navigation satellite system (GNSS) have been challenging tasks for some decades. Considering the reliability problem of extra-wide-lane (EWL) ambiguity in the triple-carrier ambiguity resolution (TCAR), a method for validating the reliability of the EWL ambiguity using a single epoch was proposed for the BeiDou Navigation Satellite System (BDS). For the initial EWL ambiguity, obtained using a rounding estimator with a geometry-free (GF) model, the double-difference ionospheric delay was first estimated to construct a relative positioning model with an initial fixed ambiguity. Second, based on the theory of gross error detection and the AR characteristics of EWL, the second-best ambiguity candidate was constructed. Finally, among the two sets of ambiguities, the one with the smaller posterior variance was taken as the reliable ambiguity. The study showed that, for a single epoch, when only one or two satellites had incorrect ambiguities, the AR success rate after ambiguity validation and correction could reach 100% for medium baselines. For long baselines, due to the increase of atmospheric error, the validation was affected to some extent. However, the AR success rates for two long baselines increased from 96.82% and 98.44% to 98.80% and 99.67%, respectively.
topic ewl ambiguity resolution
reliability
triple-frequency
gross error detect
bds
url https://www.mdpi.com/1424-8220/20/5/1534
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