Deep urban unaided precise GNSS vehicle positioning

06/23/2019
by   Todd E. Humphreys, et al.
0

This paper presents the most thorough study to date of vehicular carrier-phase differential GNSS (CDGNSS) positioning performance in a deep urban setting unaided by complementary sensors. Using data captured during approximately 2 hours of driving in and around the dense urban center of Austin, TX, a CDGNSS system is demonstrated to achieve 17-cm-accurate 3D urban positioning (95 results are achieved without any aiding by inertial, electro-optical, or odometry sensors. Development and evaluation of the unaided GNSS-based precise positioning system is a key milestone toward the overall goal of combining precise GNSS, vision, radar, and inertial sensing for all-weather high-integrity high-absolute-accuracy positioning for automated and connected vehicles. The system described and evaluated herein is composed of a densely-spaced reference network, a software-defined GNSS receiver, and a real-time kinematic (RTK) positioning engine. A performance sensitivity analysis reveals that navigation data wipeoff for fully-modulated GNSS signals and a dense reference network are key to high-performance urban RTK positioning. A comparison with existing unaided systems for urban GNSS processing indicates that the proposed system has significantly greater availability or accuracy.

READ FULL TEXT

page 1

page 3

page 7

research
09/09/2020

All-Weather sub-50-cm Radar-Inertial Positioning

Deployment of automated ground vehicles beyond the confines of sunny and...
research
05/02/2020

TEX-CUP: The University of Texas Challenge for Urban Positioning

A public benchmark dataset collected in the dense urban center of the ci...
research
01/27/2022

Low-Cost Inertial Aiding for Deep-Urban Tightly-Coupled Multi-Antenna Precise GNSS

A vehicular pose estimation technique is presented that tightly couples ...
research
06/20/2021

Analysis of geospatial behaviour of visitors of urban gardens: is positioning via smartphones a valid solution?

Tracking locations is practical and speditive with smartphones, as they ...
research
05/02/2020

Automotive-Radar-Based 50-cm Urban Positioning

Deployment of automated ground vehicles (AGVs) beyond the confines of su...
research
11/27/2022

Architecture, Protocols, and Algorithms for Location-Aware Services in Beyond 5G Networks

The automotive and railway industries are rapidly transforming with a st...
research
04/11/2018

Evaluation of Kinematic Precise Point Positioning Convergence with an Incremental Graph Optimizer

Estimation techniques to precisely localize a kinematic platform with GN...

Please sign up or login with your details

Forgot password? Click here to reset