Title :
The Path Inference Filter: Model-Based Low-Latency Map Matching of Probe Vehicle Data
Author :
Hunter, Timothy ; Abbeel, Pieter ; Bayen, Alexandre
Author_Institution :
Dept. of Electr. Eng. & Comput. Sci., Univ. of California at Berkeley, Berkeley, CA, USA
Abstract :
We consider the problem of reconstructing vehicle trajectories from sparse sequences of GPS points, for which the sampling interval is between 1 s and 2 min. We introduce a new class of algorithms, which are altogether called the path inference filter (PIF), that maps GPS data in real time, for a variety of tradeoffs and scenarios and with a high throughput. Numerous prior approaches in map matching can be shown to be special cases of the PIF presented in this paper. We present an efficient procedure for automatically training the filter on new data, with or without ground-truth observations. The framework is evaluated on a large San Francisco taxi data set and is shown to improve upon the current state of the art. This filter also provides insights about driving patterns of drivers. The PIF has been deployed at an industrial scale inside the Mobile Millennium traffic information system, and is used to map fleets of data in San Francisco and Sacramento, CA, USA; Stockholm, Sweden; and Porto, Portugal.
Keywords :
Global Positioning System; network theory (graphs); pattern matching; statistical distributions; traffic information systems; California; GPS points; Global Positioning Systems; Mobile Millennium traffic information system; PIF algorithm; Porto; Portugal; Sacramento; San Francisco taxi data set; Stockholm; Sweden; USA; United States of America; driving patterns; model-based low-latency map matching; path inference filter; probe vehicle data; vehicle trajectories reconstruction; Global Positioning System; Mobile communication; Probability distribution; Probes; Roads; Trajectory; Vehicles; Expectation-maximization algorithms; GPS data; Markov random fields; filtering; maximum likelihood estimation; network-free data; path observation generation; probabilistic map matching; route choice modeling;
Journal_Title :
Intelligent Transportation Systems, IEEE Transactions on
DOI :
10.1109/TITS.2013.2282352