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Updated: Feb 28, 2026

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Trajectory Data Analyses for Pedestrian Space-time Activity Study
Published on: February 25, 2013
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Length- and Usage-Weighted Indices for Representative Route Extraction from Trajectory Data.
1Department of Highway and Transportation Research, Korea Institute of Civil Engineering and Building Technology, Goyang-si 10223, Republic of Korea.
Sensors (Basel, Switzerland)
|February 27, 2026
Summary
New weighted indices improve vehicle trajectory analysis by reducing bias from short road segments. This enhances the accuracy of representative path extraction for better urban mobility management.
Area of Science:
- Transportation Science
- Data Science
- Geographic Information Systems
Background:
- Conventional metrics for vehicle trajectory analysis often overemphasize short road segments, leading to biased similarity assessments and unstable route grouping.
- This bias distorts the representativeness of extracted paths from large-scale urban trajectory data.
Purpose of the Study:
- To introduce novel weighted indices for representative path extraction from large-scale vehicle trajectory data.
- To mitigate the overstatement of short link representativeness inherent in traditional metrics.
Main Methods:
- Developed weighted indices including link passing ratio, average link usage ratio, and path overlap, all adjusted for link length and usage frequency.
- Applied these indices to a dataset of 18,205 real-world urban trajectories for analysis and comparison with conventional metrics.
Main Results:
- Weighted indices reduced short-link bias by 20-30% and increased the stability of representative path grouping by 15-30% compared to conventional methods.
- Confirmed that weighted indices accurately capture structural characteristics of GPS-based trajectories, reflecting stable link usage and overlap patterns.
Conclusions:
- Refined trajectory similarity metrics at the link level significantly improve the accuracy and stability of representative path extraction.
- These advancements have direct implications for intelligent transportation systems, enhancing applications like vehicle kilometers traveled estimation and congestion diagnostics.
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