DocumentCode :
2642668
Title :
Lane Change Maneuver Detection from Probe Vehicle DGPS Data
Author :
Xuan, Yiguang ; Coifman, Benjamin
Author_Institution :
Dept. of Electr. & Comput. Eng., Ohio State Univ., Columbus, OH
fYear :
2006
fDate :
17-20 Sept. 2006
Firstpage :
624
Lastpage :
629
Abstract :
The impact of lane change maneuvers is fundamental to microscopic traffic flow theory. Due to the difficulty of tracking many vehicles over time and space, most of the published research in this area seek to find lane change maneuvers visually from wayside cameras. This paper presents a different approach, finding the lane change maneuvers of a probe vehicle itself using differential Global Positioning System (DGPS) data. We first use multiple probe vehicle trajectories through a study corridor to establish a reference trajectory from the median of all trajectories and this reference trajectory is used to define the position of the current lane. This approach eliminates the need for high-resolution maps accurate enough to capture the exact position of the individual lanes. Our lane change maneuver detection is then divided into two parts, controlling for the impacts of mandatory lane change maneuvers (MLC) and then for discretionary lane change maneuvers (DLC). MLC are detected by comparing the difference between the mean and median of lateral distance of all trajectories relative to a reference trajectory. After distinguishing all the MLCs, the DLC are found by setting lateral thresholds around the reference trajectory, i.e., when a given trajectory leaves this virtual lane. In the process we control for the impacts of GPS errors, such as multipath, arising from obstructions. DLC are then found by comparing the out-of-threshold-line time and length to a threshold acquired empirically from data
Keywords :
Global Positioning System; road traffic; road vehicles; target tracking; traffic engineering computing; differential Global Positioning System; discretionary lane change maneuvers; lane change maneuver detection; mandatory lane change maneuvers; microscopic traffic flow theory; multiple probe vehicle trajectories; probe vehicle DGPS; Change detection algorithms; Global Positioning System; Image processing; Microscopy; Probes; Radar tracking; Traffic control; Vehicle detection; Vehicle safety; Vehicles;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Intelligent Transportation Systems Conference, 2006. ITSC '06. IEEE
Conference_Location :
Toronto, Ont.
Print_ISBN :
1-4244-0093-7
Electronic_ISBN :
1-4244-0094-5
Type :
conf
DOI :
10.1109/ITSC.2006.1706811
Filename :
1706811
Link To Document :
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