TY - GEN
T1 - Improving GNSS Positioning in Challenging Urban Areas by Digital Twin Database Correction
AU - Lian, Jiarong
AU - Zhou, Jiayi
AU - Luo, Yiran
AU - Zhang, Guohao
AU - Hsu, Li Ta
N1 - Publisher Copyright:
© 2024 IEEE.
PY - 2024
Y1 - 2024
N2 - Accurate positioning technology is essential for various industry and business applications. While indoor and outdoor positioning techniques have been extensively studied, challenges remain in achieving reliable positioning during transitions between these environments. This paper proposes a digital twin-aided positioning correction method to enhance outdoor positioning performance in urban areas, where environmental changes frequently occur. The proposed algorithm simulates positioning solutions for virtual receivers within a grid-based digital twin. By analyzing these simulated positioning errors for each virtual receiver, a statistical model is developed to investigate their positioning characteristics and create a correction information database. Information in this database can be retrieved from the digital twin to the real world and helps improve the positioning performance of GNSS receivers. Importantly, the algorithm is designed to have a low computational load on the receiver side and does not require specially designed antennas, making it suitable for small-sized devices.
AB - Accurate positioning technology is essential for various industry and business applications. While indoor and outdoor positioning techniques have been extensively studied, challenges remain in achieving reliable positioning during transitions between these environments. This paper proposes a digital twin-aided positioning correction method to enhance outdoor positioning performance in urban areas, where environmental changes frequently occur. The proposed algorithm simulates positioning solutions for virtual receivers within a grid-based digital twin. By analyzing these simulated positioning errors for each virtual receiver, a statistical model is developed to investigate their positioning characteristics and create a correction information database. Information in this database can be retrieved from the digital twin to the real world and helps improve the positioning performance of GNSS receivers. Importantly, the algorithm is designed to have a low computational load on the receiver side and does not require specially designed antennas, making it suitable for small-sized devices.
KW - digital twin
KW - GNSS
KW - seamless positioning
KW - urban area
UR - https://www.scopus.com/pages/publications/85216398353
U2 - 10.1109/IPIN62893.2024.10786144
DO - 10.1109/IPIN62893.2024.10786144
M3 - Conference article published in proceeding or book
AN - SCOPUS:85216398353
T3 - Proceedings of the 2024 14th International Conference on Indoor Positioning and Indoor Navigation, IPIN 2024
BT - Proceedings of the 2024 14th International Conference on Indoor Positioning and Indoor Navigation, IPIN 2024
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 14th International Conference on Indoor Positioning and Indoor Navigation, IPIN 2024
Y2 - 14 October 2024 through 17 October 2024
ER -