BDD-Based Deadlock Avoidance for Automated Guided Vehicles in Warehouse Logistics (Case Study Paper)
Benjamin von Berg, Bernhard K. Aichernig, Fabian Wedenik
摘要
Abstract In this work, we present an industrial case study of deadlock avoidance in the context of automated warehouse logistics. In particular, we consider systems of Automated Guided Vehicles (AGVs) in which semi-autonomous robots move inside a facility along a predefined set of paths. The paper introduces a novel formalization of AGV systems that models the physical setup of the AGV system more accurately compared to previous approaches. In particular, our modeling approach captures movement restrictions due to physical proximity of vehicles regardless of the logical connectivity of the guide path network. The paper provides and compares three different encodings of such models as transition systems, which enable symbolic analysis of the system via Binary Decision Diagrams (BDDs). Based on these encodings we perform deadlock avoidance for warehouse layouts of both synthetic and real-world origin.
问问这篇 Paper
问问你的智能体。
Lune 读过与它相关的顶会 Paper,每个回答都会注明依据哪几篇。
相关 Paper
- Continuous Lifelong Conflict-Aware AGV Routing with Kinematic ConstraintsRuizhong Wu, Mengxuan Zhang, Shuxin Wang, Frodo Kin-Sun Chan 等VLDB 2025
- Are We Stuck? Modeling and Detecting Deadlocks in Multi-autonomous Vehicle SystemsMingfei Cheng, Xiaofei Xie, Lili Quan, Yuan ZhouISSTA 2026
- On Computing Makespan-Optimal Solutions for Generalized Sliding-Tile PuzzlesMarcus Gozon, Jingjin YuAAAI 2024 · 被引用 6 次
- Collision-Aware Route Planning in Warehouses Made Efficient: A Strip-based FrameworkDingyuan Shi, Nan Zhou, Yongxin Tong, Zimu Zhou 等ICDE 2023 · 被引用 4 次
- Multi-Agent Motion Planning for Differential Drive Robots Through Stationary State SearchJingtian Yan, Jiaoyang LiAAAI 2025 · 被引用 11 次
