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VernaCopter: Disambiguated Natural-Language-Driven Robot via Formal Specifications

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arxiv 2409.09536 v2 pith:OYJU5E3Y submitted 2024-09-14 cs.RO cs.AI

classification cs.ROcs.AI
keywords plannerrobotspecificationsvernacopterbeencontrolformallanguage
verification ladder T0 review T1 audit T2 compute T3 formal
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It has been an ambition of many to control a robot for a complex task using natural language (NL). The rise of large language models (LLMs) makes it closer to coming true. However, an LLM-powered system still suffers from the ambiguity inherent in an NL and the uncertainty brought up by LLMs. This paper proposes a novel LLM-based robot motion planner, named \textit{VernaCopter}, with signal temporal logic (STL) specifications serving as a bridge between NL commands and specific task objectives. The rigorous and abstract nature of formal specifications allows the planner to generate high-quality and highly consistent paths to guide the motion control of a robot. Compared to a conventional NL-prompting-based planner, the proposed VernaCopter planner is more stable and reliable due to less ambiguous uncertainty. Its efficacy and advantage have been validated by two small but challenging experimental scenarios, implying its potential in designing NL-driven robots.

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  1. BT-TL-DMPs: A Novel Robot TAMP Framework Combining Behavior Tree, Temporal Logic and Dynamical Movement Primitives

    cs.RO 2025-07 reject novelty 4.0 of 10

    A hierarchical robot planning framework that generates behavior trees from temporal logic specifications and optimizes dynamic movement primitives to satisfy spatiotemporal constraints while preserving demonstrated mo...

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