Real-time Lane Detection Techniques Using Optimal Estimator and Deep Learning-based Lane Segmentation for Self-driving Vehicles

被引:1
作者
Jo Y.-H. [1 ]
Lee D.-J. [2 ]
机构
[1] School of Mechanical Convergence System Engineering, Kunsan National University
[2] School of Mechanical Design Engineering, Jeonbuk National University
关键词
Deep Learning; Kalman filter; Lane Detection; LaneNet; Self-Driving Vehicle;
D O I
10.5302/J.ICROS.2022.20.8006
中图分类号
学科分类号
摘要
Road lane-line detection systems are crucial for assisting human drivers in various driving scenes. Nowadays, these systems have become more critical for autonomous cars. In recent years, many advanced lane detection and tracking methods have been studied. However, most approaches focus on detecting lanes by performing conventional image processing on a single frame. Often, the lack of distinguishing features and the presence of extreme weather conditions such as dense rain or snow makes these algorithms lose their accuracy. In this work, deep learning is merged as a tool to address these issues. A modified version of the LaneNet algorithm was designed as a road lane detector, in which the front image was passed as input to the encoder model. Consequently, the road lanes could be robustly detected even if they were discrete or unclear. For lane curvature estimation, a Kalman filter was utilized, which took the results obtained from the LaneNet detection module as input. The detection results were compared with those obtained using the conventional Hough transformation. The obtained results demonstrate the effectiveness of our approach. © ICROS 2022.
引用
收藏
页码:353 / 361
页数:8
相关论文
共 17 条
[1]  
Wei J., Snider J.M., Kim J., Dolan J.M., Rajkumar R., Litkouhi B., Towards a viable autonomous driving research platform, IEEE Intelligent Vehicles Symposium, 2013, pp. 763-770, (2013)
[2]  
Song B.S., Jung W.Y., Self-driving car equipped with deep learning technology, Korea Institute of Science and Technology, Convergence Research Review, 3, 10, pp. 1-51, (2017)
[3]  
International Traffic Safety Data and Analysis Group, (2021)
[4]  
Yoon P.-H., Lee S.-B., A study on evaluation method of the LKAS test in domestic road environment, Journal of the Korea Academia-Industrial Cooperation Society, 12, 18, pp. 628-637, (2017)
[5]  
Dorj B., Hossain S., Lee D.-J., Highly curved lane detection algorithms based on kalman filter, Applied Science, (2020)
[6]  
Park J.-M., Lee J.-W., Nighttime vehicle detection on roads by combining image processing and CNN, Journal of Institute of Control, 25, 12, pp. 1085-1092, (2019)
[7]  
Kim D.-H., Ha J.-E., Multi-Lane detection using convolutional neural networks and transfer learning, Journal of Institute of Control, 23, 9, pp. 718-724, (2017)
[8]  
Ko K.-E., Shim H., Sim K.-B., Development of behavior understanding system based on object-human interaction pattern extraction using deep learning model, Robotics and Systems (In Korean), 24, 1, pp. 57-63, (2018)
[9]  
LaneNet-Lane-Detection,” [Online]. Available
[10]  
Dorj B., Lee D.-J., A precise lane detection algorithm based on top view image transformation and least-square approaches, Sensors, 2016, pp. 1-13, (2016)