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An automatic lane identification method for the roadside light detection and ranging sensor.

, , , , , and . J. Intell. Transp. Syst., 24 (5): 467-479 (2020)

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Probabilistic Prediction of Pedestrian Crossing Intention Using Roadside LiDAR Data., , , and . IEEE Access, (2019)An automatic lane identification method for the roadside light detection and ranging sensor., , , , , and . J. Intell. Transp. Syst., 24 (5): 467-479 (2020)A Novel Background Filtering Method With Automatic Parameter Adjustment for Real-Time Roadside-LiDAR Sensing System., , , and . IEEE Trans. Instrum. Meas., (2023)A decoding-based method for fast background filtering of roadside LiDAR data., , , and . Adv. Eng. Informatics, (August 2023)Automatic Lane Identification Using the Roadside LiDAR Sensors., , and . IEEE Intell. Transp. Syst. Mag., 12 (1): 25-34 (2020)SIMCal: A High-Performance Toolkit For Calibrating Traffic Simulation., , , and . IEEE Big Data, page 2895-2902. IEEE, (2022)Automatic Identification of Anomalous Driving Events from Trajectory Data., and . ITSC, page 851-856. IEEE, (2022)Azimuth-Height Background Filtering Method for Roadside LiDAR Data., , , and . ITSC, page 2421-2426. IEEE, (2019)Automatic Vehicle Tracking With Roadside LiDAR Data for the Connected-Vehicles System., , , , and . IEEE Intell. Syst., 34 (3): 44-51 (2019)Towards application of light detection and ranging sensor to traffic detection: an investigation of its built-in features and installation techniques., , , and . J. Intell. Transp. Syst., 26 (2): 213-234 (2022)