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Feasibility Study: Moving Non-Homogeneous Teams in Congested Video Game Environments.

, , , , and . AIIDE, page 270-272. AAAI Press, (2017)

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Improved Heuristics for Multi-Agent Path Finding with Conflict-Based Search., , , , and . IJCAI, page 442-449. ijcai.org, (2019)Segmented compensation using compound iterative learning control on 2D system for linear motor., , , and . ICMLC, page 1233-1238. IEEE, (2010)Real-Time Monitoring of Contact Impedance From Multiple Electrode-Scalp Interfaces During Cerebral Electrical Impedance Tomography., , , , , , , , and . IEEE Access, (2019)Planning, Scheduling and Monitoring for Airport Surface Operations., , , , , , and . AAAI Workshop: Planning for Hybrid Systems, volume WS-16-12 of AAAI Technical Report, AAAI Press, (2016)978-1-57735-759-9.Large-Scale Multi-Robot Coverage Path Planning via Local Search., and . AAAI, page 17567-17574. AAAI Press, (2024)A Competitive Analysis of Online Multi-Agent Path Finding.. ICAPS, page 234-242. AAAI Press, (2021)Multi-Agent Pathfinding: Definitions, Variants, and Benchmarks., , , , , , , , , and 2 other author(s). SOCS, page 151-158. AAAI Press, (2019)Multi-Agent Path Finding with Deadlines: Preliminary Results., , , , , and . AAMAS, page 2004-2006. International Foundation for Autonomous Agents and Multiagent Systems Richland, SC, USA / ACM, (2018)Formation change for robot groups in occluded environments., , , , and . IROS, page 4836-4842. IEEE, (2016)Summary: Multi-Agent Path Finding with Kinematic Constraints., , , , , , and . IJCAI, page 4869-4873. ijcai.org, (2017)