Delayed Expansion AGT: Kinodynamic Planning with Application to Tractor-Trailer Parking
Zheng, Dongliang, Wang, Yebin, Di Cairano, Stefano, Tsiotras, Panagiotis
–arXiv.org Artificial Intelligence
Kinodynamic planning of articulated vehicles in cluttered environments faces additional challenges arising from high-dimensional state space and complex system dynamics. Built upon [1],[2], this work proposes the DE-AGT algorithm that grows a tree using pre-computed motion primitives (MPs) and A* heuristics. The first feature of DE-AGT is a delayed expansion of MPs. In particular, the MPs are divided into different modes, which are ranked online. With the MP classification and prioritization, DE-AGT expands the most promising mode of MPs first, which eliminates unnecessary computation and finds solutions faster. To obtain the cost-to-go heuristic for nonholonomic articulated vehicles, we rely on supervised learning and train neural networks for fast and accurate cost-to-go prediction. The learned heuristic is used for online mode ranking and node selection. Another feature of DE-AGT is the improved goal-reaching. Exactly reaching a goal state usually requires a constant connection checking with the goal by solving steering problems -- non-trivial and time-consuming for articulated vehicles. The proposed termination scheme overcomes this challenge by tightly integrating a light-weight trajectory tracking controller with the search process. DE-AGT is implemented for autonomous parking of a general car-like tractor with 3-trailer. Simulation results show an average of 10x acceleration compared to a previous method.
arXiv.org Artificial Intelligence
Jun-17-2025
- Country:
- Africa > Togo (0.04)
- Asia
- Japan > Honshū
- Kansai > Osaka Prefecture > Osaka (0.04)
- Middle East > Republic of Türkiye
- Karaman Province > Karaman (0.04)
- Japan > Honshū
- Europe
- Germany (0.04)
- United Kingdom > England
- Cambridgeshire > Cambridge (0.04)
- North America
- Canada > Quebec
- Montreal (0.04)
- United States
- Georgia > Fulton County
- Atlanta (0.04)
- Massachusetts > Middlesex County
- Cambridge (0.04)
- Georgia > Fulton County
- Canada > Quebec
- Genre:
- Research Report (0.70)
- Industry:
- Automobiles & Trucks (1.00)
- Transportation
- Freight & Logistics Services (0.43)
- Ground > Road (0.67)
- Technology:
- Information Technology > Artificial Intelligence
- Cognitive Science > Problem Solving (0.50)
- Machine Learning (1.00)
- Representation & Reasoning
- Planning & Scheduling (0.69)
- Search (0.46)
- Robots > Autonomous Vehicles (0.48)
- Information Technology > Artificial Intelligence