返回
LSPP: A Novel Path Planning Algorithm Based on Perceiving Line Segment Feature
DOI:10.1109/JSEN.2021.3130282.png)
摘要
En 中文
Path planning in the automatic driving system generally uses point features to evaluate the influence of obstacles on the robot, leading to missing information or increasing computational burden. This paper proposes a novel path planning with line segment (LSPP) algorithm from the viewpoint of line segment, which is easy to be obtained directly from sensors. In LSPP, an artificial potential field (APF) based on the azimuth and distance (ADAPF) from obstacles to the robot is first constructed for implementation of integral calculation. Unlike the traditional APF which only considers the nearest distance from obstacles to the robot, ADAPF can effectively assess the influence of boundary points on the robot by fully utilizing the information of obstacles. Based on ADAPF, boundary points are integrated into lines as edges of the drivable area in a specialized coordinate system. Then, a multi-loss function is designed to guarantee that the robot is far away from obstacles to the optimized path, and thus solved by a modified Dogleg (MDL) algorithm combined with symmetric rank-1 (SR1) method based on adaptive initial trust-region radii. Finally, a smooth and safe path is provided in LSPP with the requirements of speed and quality being satisfied simultaneously. Real-world experimental results validate the robustness and the effectiveness of LSPP.
Keyword:
Path planning
Optimization
Robots
Heuristic algorithms
Roads
Sensors
Robot kinematics
Path optimization
path planning
automatic driving
mobile robot
期刊
IF:
4.5
论文数:
2.2W
被引数:
7.3W
机构
引用论文
Does it take older adults longer than younger adults to perceptually segregate a speech target from a background masker?在感知上将语音目标与背景掩蔽器隔离开来是否需要老年人比年轻人更长的时间?
Hierarchical Trajectory Planning of an Autonomous Car Based on the Integration of a Sampling and an Optimization Method基于采样和优化方法集成的自动驾驶汽车分层轨迹规划
Application of ATR-FTIR spectroscopy in quantitative analysis of deuterium in basic solutions
Analusis
IF0

