Vehicle Distance Measurement Method of Two-Way Two-Lane Roads Based on Monocular Vision

Author:

Yang Rong1,Yu Shuyuan1,Yao Qihong1,Huang Junming1,Ya Fuming2

Affiliation:

1. School of Mechanical Engineering, Guangxi University, Nanning 530004, China

2. School of Computer, Electronics and Information, Guangxi University, Nanning 530004, China

Abstract

The longitudinal distance between the vehicle and the forward vehicle, as well as the longitudinal distance between the vehicle and the opposite vehicle, is the main risk factor of overtaking behavior on two-way two-lane roads. Accurate measurement of these distances is the basis and key to automatic driving technology of two-way two-lane roads. In order to measure these longitudinal distances and improve the ranging accuracy, a vehicle distance measurement method of two-way two-lane roads based on monocular vision was proposed. Firstly, the vehicle detection model suitable for two-way two-lane roads was trained using YOLOv5s neural network. Secondly, aiming at the problem that the camera roll angle is not considered in the traditional geometric ranging method, the influence of the roll angle of the camera on ranging results using the traditional geometric ranging method was analyzed. In addition, the improved geometric ranging method considering the roll angle of the camera was proposed. Then, tests were conducted on a two-way two-lane road, and the results showed that the proposed method was effective. Compared with other methods, the improved geometric ranging method has higher ranging accuracy in this scene and can provide a reference for vision-based vehicle distance measurement in multi-lane scenes.

Funder

Guangxi Innovation Driven Development Project

Publisher

MDPI AG

Subject

Fluid Flow and Transfer Processes,Computer Science Applications,Process Chemistry and Technology,General Engineering,Instrumentation,General Materials Science

Reference31 articles.

1. Slot control optimization of intelligent platoon for dual-lane two-way overtaking behavior;Chen;J. Traffic Transp. Eng.,2019

2. Advanced driver assistance strategies for a single-vehicle overtaking a platoon on the two-lane two-way road;Chen;IEEE Access,2020

3. A combined simulation approach to evaluate overtaking behaviour on two-lane two-way rural roads;Branzi;J. Adv. Transp.,2021

4. Perceptual processes used by drivers during overtaking in a driving simulator;Gray;Hum. Factors,2005

5. Overtaking assistant assessment using traffic simulation;Hegeman;Transp. Res. Part C Emerg. Technol.,2009

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