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Resilient Temporal Logic Planning in the Presence of Robot Failures

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arxiv 2305.05485 v2 pith:32A2BL3T submitted 2023-05-09 cs.RO

classification cs.RO
keywords robotcapabilitiesfailuresmissionpathsplanningproposedrobots
verification ladder T0 review T1 audit T2 compute T3 formal
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Several task and motion planning algorithms have been proposed recently to design paths for mobile robot teams with collaborative high-level missions specified using formal languages, such as Linear Temporal Logic (LTL). However, the designed paths often lack reactivity to failures of robot capabilities (e.g., sensing, mobility, or manipulation) that can occur due to unanticipated events (e.g., human intervention or system malfunctioning) which in turn may compromise mission performance. To address this novel challenge, in this paper, we propose a new resilient mission planning algorithm for teams of heterogeneous robots with collaborative LTL missions. The robots are heterogeneous with respect to their capabilities while the mission requires applications of these skills at certain areas in the environment in a temporal/logical order. The proposed method designs paths that can adapt to unexpected failures of robot capabilities. This is accomplished by re-allocating sub-tasks to the robots based on their currently functioning skills while minimally disrupting the existing team motion plans. We provide experiments and theoretical guarantees demonstrating the efficiency and resiliency of the proposed algorithm.

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  1. Leveraging LLMs for Mission Planning in Precision Agriculture

    cs.RO 2025-06 conditional novelty 5.0 of 10

    ChatGPT can generate valid behavior-tree mission plans for agricultural robots from natural-language requests, but spatial and route-optimization tasks still require an external stochastic-orienteering solver.

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