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OAA: Three Phases of Vocal Guidance in Human-Drone Teleoperation

Authors

Do you know Allan Henry?You can claim authorship or link another user.Do you know Christian Graff?You can claim authorship or link another user.Do you know Solange Rossato?You can claim authorship or link another user.Do you know José-Ernesto Gomez-Balderas?You can claim authorship or link another user.Do you know Sylvain Huet?You can claim authorship or link another user.

Abstract

Voice-guided teleoperation requires systems that adapt to the evolving dynamics of human guidance. Yet most voice-controlled robot systems treat spoken commands as a stationary stream, ignoring how the guide's communicative behavior changes as the task progresses. Using motion capture and speech data from two experimental configurations, humanhuman guidance (finger pointing, N =10 dyads) and humandrone teleoperation (gamepad control, N =29 dyads), we show that spontaneous vocal guidance consistently organizes into three kinematically and linguistically distinct phases: Orientation, Approach, and Adjustment. These phases are identified automatically via change point detection on 3D trajectory signals, and validated statistically (Kruskal-Wallis, p<.001). Three lexical families replicate across configurations: rotation vocabulary marks Orientation, translation vocabulary is scarce there, and attenuators accumulate toward Adjustment. Together with inter-utterance silence, these cues mark the Orientation boundary that speech rate alone leaves unmarked. The same three-phase structure emerges in both configurations despite radically different motor interfaces, suggesting it is an intrinsic property of human spatial guidance rather than an artifact of the experimental setup. We discuss implications for OAA-aware adaptive control in voice-guided teleoperation.

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Publication notes

Journal
Human State?Aware Robotics (H-STAR): From Multimodal Data to Human?Adaptive Behavior in HRI, Aug 2026, Kitakyushu, Japan