Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

An Artificial Intelligence Based Autonomous Road Lane Detection and Navigation System for Vehicles

View through CrossRef
Lane detection is a foundational technology for autonomous driving systems. It involves identifying the boundaries of lanes on the road and ensuring the vehicle stays within these boundaries. Accurate lane detection is crucial for safety, navigation and traffic management. This paper presents an artificial intelligent based autonomous road lane detection and navigation system for vehicles. The system can detect and analyze road lanes accurately and efficiently in real-time, with frame rates of up to 17 FPS. By utilizing image processing techniques, the system can identify the location and boundaries of road lanes and obstacles on the road and provide accurate and reliable navigation guidance to the driver. The system is integrated with sensors and actuators to provide comprehensive autonomous navigation. The efficiency of the proposed system is demonstrated using accuracy of lane detection on straight and curve lanes covering frames per second and motor of the speed as parameters for assessment. Results show that the proposed system detects lane as entire lane detection, partial lane detection and no detection status on different settings.
Title: An Artificial Intelligence Based Autonomous Road Lane Detection and Navigation System for Vehicles
Description:
Lane detection is a foundational technology for autonomous driving systems.
It involves identifying the boundaries of lanes on the road and ensuring the vehicle stays within these boundaries.
Accurate lane detection is crucial for safety, navigation and traffic management.
This paper presents an artificial intelligent based autonomous road lane detection and navigation system for vehicles.
The system can detect and analyze road lanes accurately and efficiently in real-time, with frame rates of up to 17 FPS.
By utilizing image processing techniques, the system can identify the location and boundaries of road lanes and obstacles on the road and provide accurate and reliable navigation guidance to the driver.
The system is integrated with sensors and actuators to provide comprehensive autonomous navigation.
The efficiency of the proposed system is demonstrated using accuracy of lane detection on straight and curve lanes covering frames per second and motor of the speed as parameters for assessment.
Results show that the proposed system detects lane as entire lane detection, partial lane detection and no detection status on different settings.

Related Results

High-Precision Navigation Approach of High-Orbit Spacecraft Based on Retransmission Communication Satellites
High-Precision Navigation Approach of High-Orbit Spacecraft Based on Retransmission Communication Satellites
Many countries have presented new requirements for in-orbit space services. Space autonomous rendezvous and docking technology could speed up the development of in-orbit spacecraft...
DataSet for Unflappable Driving : UNFLAPSet
DataSet for Unflappable Driving : UNFLAPSet
Abstract Autonomous vehicles must be aware of dynamic and static objects, road lanes, road signs and road markings. Recent autonomous vehicles awareness studies adaptable t...
Lane Model and Calculation of Lane Geometric Structure and Vehicle Deviation Angle and Position in Lane for Intelligent Vehicle
Lane Model and Calculation of Lane Geometric Structure and Vehicle Deviation Angle and Position in Lane for Intelligent Vehicle
Lane model, lane geometric structure calculation, and vehicle deviation angle and position calculation is a crucial part in automatic drive of intelligent vehicle. In this paper, w...
Eyes on Air
Eyes on Air
Abstract We at ADNOC Logistics & Services have identified the need for a Fully Integrated Inspection and Monitoring Solution to meet our operational, safety and ...
Research on Lane Line Detection Method Based on Cross Attention Mechanism
Research on Lane Line Detection Method Based on Cross Attention Mechanism
Abstract Lane detection is a key technical challenge in autonomous driving and advanced driving assistance systems. The current lane detection system has insufficient robus...
Passenger Vehicle Lane Departure Warning, Lane Keeping Assistance, and Lane Centering Assistance Systems Test Procedure
Passenger Vehicle Lane Departure Warning, Lane Keeping Assistance, and Lane Centering Assistance Systems Test Procedure
<div class="section abstract"> <div class="htmlview paragraph">This SAE Recommended Practice establishes a test procedure for the evaluation of lane departure warning...
Use of LiDAR for Negative Obstacle Detection: A Thorough Review
Use of LiDAR for Negative Obstacle Detection: A Thorough Review
Abstract Negative obstacles for field autonomous land vehicles refer to potholes, ditches, cliffs, pits, or any type of obstacles that are on the road but not in a v...
Combining Low-Light Scene Enhancement for Fast and Accurate Lane Detection
Combining Low-Light Scene Enhancement for Fast and Accurate Lane Detection
Lane detection is a crucial task in the field of autonomous driving, as it enables vehicles to safely navigate on the road by interpreting the high-level semantics of traffic signs...

Back to Top