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Body-Motion Control of a Simulated Aerial Swarm from a First-Person View

来源:arXiv cs.RO 论文速递 约 1648 字
arXiv cs.RO
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01核心要点

  • First-person-view (FPV) teleoperation of aerial swarms requires an operator to coordinate collective translation, viewing direction, and formation spacing.
  • We present an upper-body interface that maps torso inclination, hand position, and head rotation to five continuous command dimensions.
  • Neutral postures and motion ranges are calibrated for each participant.

02正文全文

Abstract:First-person-view (FPV) teleoperation of aerial swarms requires an operator to coordinate collective translation, viewing direction, and formation spacing. We present an upper-body interface that maps torso inclination, hand position, and head rotation to five continuous command dimensions. Neutral postures and motion ranges are calibrated for each participant. In a within-subject study, 14 participants navigated a simulated 15-agent swarm through three-dimensional obstacle courses using this interface and a conventional transmitter. Body-motion control reduced completion time by 19.4% and centroid path length by 7.0%, and increased path directness. Delivered-command variation was 88.8% lower, and concurrent command changes were more frequent. These command measures characterize the complete interfaces, which differed in calibration and filtering. No differences were detected in gate-centering error, collection yield, crash or disconnection counts, overall workload, or usability. All participants reported higher physical demand with body-motion control. The implemented interface therefore improved FPV navigation efficiency at the cost of greater physical demand.

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03原文直达

本文内容转载自 arXiv cs.RO,如需查看原排版、配图与最新修订,请访问原始出处。

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