Integrity monitoring scheme for single-epoch GNSS PPP-RTK positioning

被引:0
作者
Wenhao Zhang
Jinling Wang
机构
[1] University of New South Wales (UNSW),
来源
Satellite Navigation | 2023年 / 4卷
关键词
Integrity monitoring; Precise point positioning; Multi-GNSS; Ambiguity resolution; Single-epoch positioning;
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学科分类号
摘要
Integrity monitoring for precise point positioning is critical for safety-related applications. With the increasing demands of high-accuracy autonomous navigation for unmanned ground and aerial vehicles, the integrity monitoring method of high-precision positioning has become an essential requirement. While high precision Global Navigation Satellite Systems (GNSS) positioning is widely used in such applications, there are still many difficulties in the integrity monitoring method for the multi-frequency multi-GNSS undifferenced and uncombined Precise Point Positioning (PPP). The main difficulties are caused by using the measurements of multiple epochs in PPP. Based on the baseline Multiple Hypothesis Solution Separation (MHSS) Advanced Receiver Autonomous Integrity Monitoring (ARAIM) algorithm, this paper discusses the feasibility of the pseudorange-based baseline ARAIM method on the single-epoch PPP based on Real-Time Kinematic (RTK) networks (PPP-RTK) framework to overcome these difficulties. In addition, a new scheme is proposed to transfer the conventional PPP process into the single-epoch PPP-RTK framework. The simulation results using the proposed model are analyzed in this study. The Protection Levels (PLs) estimated by PPP Wide-lane Ambiguity Resolution (PPP-WAR) model with regional corrections can reach the meter level and the PLs estimated by PPP Ambiguity Resolution (PPP-AR) and PPP-RTK models are usually the sub-meter level. Given a horizontal Alert Limit (AL) of 1.5 m, the global coverage of availability above 99.9% for PPP-WAR, PPP-AR, and PPP-RTK can reach 92.6%, 99.4%, and 99.7% respectively. The results using real kinematic data also show that tight PLs can be achieved when the observation conditions are good.
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[1]  
Blanch J(2015)Baseline advanced RAIM user algorithm and possible improvements IEEE Transactions on Aerospace and Electronic Systems 51 713-732
[2]  
Walker T(2020)Prediction of RTK positioning integrity for journey planning Journal of Applied Geodesy 14 431-443
[3]  
Enge P(2021)A linear Kalman filter-based integrity monitoring considering colored measurement noise GPS Solutions 25 1-13
[4]  
Lee Y(2008)Resolution of GPS carrier-phase ambiguities in precise point positioning (PPP) with daily observations Journal of Geodesy 82 389-399
[5]  
Pervan B(2020)Beyond three frequencies: An extendable model for single-epoch decimeter-level point positioning by exploiting Galileo and BeiDou-3 signals Journal of Geodesy 94 1-15
[6]  
Rippl M(2019)Inter-system PPP ambiguity resolution between GPS and BeiDou for rapid initialization Journal of Geodesy 93 383-398
[7]  
Kropp V(2013)Integrity monitoring of fixed ambiguity Precise Point Positioning (PPP) solutions Geo-Spatial Information Science 16 141-148
[8]  
El-Mowafy A(2009)Integer ambiguity resolution on undifferenced GPS phase measurements and its application to PPP and satellite precise orbit determination Navigation 56 135-149
[9]  
Kubo N(2014)Modeling and quality control for reliable precise point positioning integer ambiguity resolution with GNSS modernization GPS Solutions 18 429-442
[10]  
Gao Y(2021)Multi-constellation GNSS PPP instantaneous ambiguity resolution with precise atmospheric corrections augmentation GPS Solutions 25 107-1003