Positioning integrity is crucial for Intelligent Transport Systems (ITS) applications. In this article, a method is presented for prediction of GNSS positioning integrity for ITS journey planning. This information, in addition to other route information, such as distance and time, can be utilized to choose the safest and economical route. We propose to combine the Advanced Receiver Autonomous Integrity Monitoring (ARAIM) technique, tailored for ITS, with 3D city models. Positioning is performed by GNSS Real-Time Kinematic (RTK) method, which can provide the accuracy required for ITS. A new threat model employed for computation of the protection levels (PLs) for RTK positioning is discussed. Demonstration of the proposed approach is ...
In recent years, the area of global navigation satellite systems (GNSS) has received a lot of attent...
Academia, Industry and Government are investigating the reliability to use the real time kinematic (...
Academia, Industry and Government are investigating the reliability to use the real time kinematic (...
Intelligent transportation systems (ITS) and autonomous vehicles need accurate localization solution...
Autonomuous transportation systems require navigation performance with a high level of integrity. As...
Safety and reliability of Intelligent Transport Systems applications require positioning accuracy at...
Safety and reliability of intelligent transport systems applications require positioning accuracy at...
As Intelligent Transport Systems (ITS) become more automated and more demanding, ITS positioning int...
Reliable continuing positioning is a critical requirement for intelligent transportation systems (IT...
The development of Global Navigation Satellite System (GNSS) augmentation systems plays an important...
© 2020 Mapping Science Institute, Australia and Surveying and Spatial Science Institute. Positio...
© 2017 IOP Publishing Ltd.Continuous and trustworthy positioning is a critical capability for advanc...
© 2020 ION 2020 International Technical Meeting Proceedings. All rights reserved. To utilize RTK-GNS...
Nowadays, integrity monitoring (IM) is required for diverse safety-related applications using intell...
Autonomous driving systems require precise real-time positioning capabilities. The estimated positio...
In recent years, the area of global navigation satellite systems (GNSS) has received a lot of attent...
Academia, Industry and Government are investigating the reliability to use the real time kinematic (...
Academia, Industry and Government are investigating the reliability to use the real time kinematic (...
Intelligent transportation systems (ITS) and autonomous vehicles need accurate localization solution...
Autonomuous transportation systems require navigation performance with a high level of integrity. As...
Safety and reliability of Intelligent Transport Systems applications require positioning accuracy at...
Safety and reliability of intelligent transport systems applications require positioning accuracy at...
As Intelligent Transport Systems (ITS) become more automated and more demanding, ITS positioning int...
Reliable continuing positioning is a critical requirement for intelligent transportation systems (IT...
The development of Global Navigation Satellite System (GNSS) augmentation systems plays an important...
© 2020 Mapping Science Institute, Australia and Surveying and Spatial Science Institute. Positio...
© 2017 IOP Publishing Ltd.Continuous and trustworthy positioning is a critical capability for advanc...
© 2020 ION 2020 International Technical Meeting Proceedings. All rights reserved. To utilize RTK-GNS...
Nowadays, integrity monitoring (IM) is required for diverse safety-related applications using intell...
Autonomous driving systems require precise real-time positioning capabilities. The estimated positio...
In recent years, the area of global navigation satellite systems (GNSS) has received a lot of attent...
Academia, Industry and Government are investigating the reliability to use the real time kinematic (...
Academia, Industry and Government are investigating the reliability to use the real time kinematic (...