DocumentCode :
3579672
Title :
Linear-chain CRF based intersection recognition
Author :
Tourani, Siddharth ; Chhaya, Falak ; Krishna, K.
fYear :
2014
Firstpage :
106
Lastpage :
111
Abstract :
For autonomous navigation in urban environments, the ability to detect road intersections in advance is crucial, especially in the absence of auxiliary geographic information. In this paper we investigate a 3D Point Cloud based solution for intersection recognition and road segment classification. We set up the intersection recognition problem as one of decoding a linear-chain Conditional Random Field (CRF). This allows us to encode temporal consistency relations between adjacent scans in our process, leading to a less error prone recognition algorithm. We quantify this claim experimentally. We first build a grid map of the point cloud, segmenting the region surrounding the robot into navigable and non-navigable regions. Then, based on our proposed beam model, we extract a descriptor of the scene. This we do as each scan is received from the robot. Based on the descriptor we build a linear chain-CRF. By decoding the CRF-chain we are able to recognize the type of road segment taken into consideration. With the proposed method, we are able to recognize Xjunctions, T-shaped intersections and standard non-branching road segments. We compare the CRF-based approach with a standard SVM based one and show performance gain due to the CRF formulation.
Keywords :
computational geometry; image classification; image segmentation; mobile robots; object detection; object recognition; random processes; road vehicles; robot vision; 3D point cloud based solution; T-shaped intersections; X-junctions; autonomous navigation; beam model; linear-chain CRF based road intersection recognition; linear-chain conditional random field; mobile robot; region segmentation; road intersection detection; road segment classification; standard nonbranching road segments; urban environments; Decoding; Global Positioning System; Image segmentation; Roads; Robots; Three-dimensional displays; Vehicles;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Vehicular Electronics and Safety (ICVES), 2014 IEEE International Conference on
Type :
conf
DOI :
10.1109/ICVES.2014.7063732
Filename :
7063732
Link To Document :
بازگشت