DEL-based Epistemic Planning for Human-Robot Collaboration: Theory and Implementation

Author:

Bolander Thomas1,Dissing Lasse1,Herrmann Nicolai1

Affiliation:

1. Technical University of Denmark

Abstract

Epistemic planning based on Dynamic Epistemic Logic (DEL) allows agents to reason and plan from the perspective of other agents. The framework of DEL-based epistemic planning thereby has the potential to represent significant aspects of Theory of Mind in autonomous robots, and to provide a foundation for human-robot collaboration in which coordination is achieved implicitly through perspective shifts. In this paper, we build on previous work in epistemic planning with implicit coordination. We introduce a new notion of indistinguishability between epistemic states based on bisimulation, and provide a novel partition refinement algorithm for computing unique representatives of sets of indistinguishable states. We provide an algorithm for computing implicitly coordinated plans using these new constructs, embed it in a perceive-plan-act agent loop, and implement it on a robot. The planning algorithm is benchmarked against an existing epistemic planning algorithm, and the robotic implementation is demonstrated on human-robot collaboration scenarios requiring implicit coordination.

Publisher

International Joint Conferences on Artificial Intelligence Organization

Cited by 7 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Epistemic Planning for Heterogeneous Robotic Systems;2023 IEEE/RSJ International Conference on Intelligent Robots and Systems (IROS);2023-10-01

2. Models and Algorithms for Human-Aware Task Planning with Integrated Theory of Mind;2023 32nd IEEE International Conference on Robot and Human Interactive Communication (RO-MAN);2023-08-28

3. Epistemic Prediction and Planning with Implicit Coordination for Multi-Robot Teams in Communication Restricted Environments;2023 IEEE International Conference on Robotics and Automation (ICRA);2023-05-29

4. delphic: Practical DEL Planning via Possibilities;Logics in Artificial Intelligence;2023

5. Recent Advances in Artificial Autonomous Decision Systems and Their Applications;Advanced, Contemporary Control;2023

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