Scinovex
articleTop 1% cited

A Potential Field-Based Model Predictive Path-Planning Controller for Autonomous Road Vehicles

IEEE Transactions on Intelligent Transportation Systems · 2016 · Vol. 18(5) · pp. 1255–1267
Yadollah RasekhipourAmir KhajepourShih-Ken ChenBakhtiar Litkouhi

Abstract

Artificial potential fields and optimal controllers are two common methods for path planning of autonomous vehicles. An artificial potential field method is capable of assigning different potential functions to different types of obstacles and road structures and plans the path based on these potential functions. It does not, however, include the vehicle dynamics in the path-planning process. On the other hand, an optimal path-planning controller integrated with vehicle dynamics plans an optimal feasible path that guarantees vehicle stability in following the path. In this method, the obstacles and road boundaries are usually included in the optimal control problem as constraints and not with any arbitrary function. A model predictive path-planning controller is introduced in this paper such that its objective includes potential functions along with the vehicle dynamics terms. Therefore, the path-planning system is capable of treating different obstacles and road structures distinctly while planning the optimal path utilizing vehicle dynamics. The path-planning controller is modeled and simulated on a CarSim vehicle model for some complicated test scenarios. The results show that, with this path-planning controller, the vehicle avoids the obstacles and observes road regulations with appropriate vehicle dynamics. Moreover, since the obstacles and road regulations can be defined with different functions, the path-planning system plans paths corresponding to their importance and priorities.

Robotic Path Planning AlgorithmsAutonomous Vehicle Technology and SafetyTraffic control and managementMotion planningController (irrigation)Path (computing)Vehicle dynamicsCarSimAny-angle path planningControl theory (sociology)EngineeringControl engineeringModel predictive control
Citations
637
FWCI
15.76
field-weighted impact
References
26
Percentile
99%
vs. same field & year
Citations per year
Cited by
A Review of Motion Planning for Highway Autonomous Driving
IEEE Transactions on Intelligent Transportation Systems · 2019 · 634 citations
References
The Driving Safety Field Based on Driver–Vehicle–Road Interactions
IEEE Transactions on Intelligent Transportation Systems · 2015 · 407 citations
Vehicle Detection Techniques for Collision Avoidance Systems: A Review
IEEE Transactions on Intelligent Transportation Systems · 2015 · 426 citations
Flocking for Multi-Agent Dynamic Systems: Algorithms and Theory
IEEE Transactions on Automatic Control · 2006 · 4,943 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.