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遠隔操作/空中マニピュレーションarXiv:2608.21735v1

力センサレス触覚フィードバックを用いた全方向空中マニピュレーションの安全重視型双方向遠隔操作

Safety-Critical Bilateral Teleoperation for Omnidirectional Aerial Manipulation Using Force-Sensorless Haptic Feedback

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本論文は、全方向空中マニピュレータの遠隔操作において、制御バリア関数に基づく安全フィルタを導入し、力センサなしで触覚フィードバックを実現する手法を提案する。実験により、自由飛行中の不要なフィードバックを回避しつつ、物理的相互作用時の安定性を向上させることを示した。

著者: Yubin Kim, Jinwoo Lee, Yongjun You, H. Jin Kim, Jeonghyun Byun

分類: cs.RO

原文アブストラクト

This paper presents a safety-critical bilateral teleoperation framework for omnidirectional aerial manipulators that integrates visual and force-sensorless haptic wrench feedback. Unlike existing approaches that either rely on onboard force/torque sensors or use model-dependent wrench estimates, which may become unreliable under model uncertainties or induce unintended feedback during free-flight, our method implements a hierarchical safety filter based on control barrier functions to avoid such limitations. The safety filter, being the key contribution, explicitly accounts for tracking errors arising from physical interaction between the aerial manipulator and its surroundings while enforcing thrust limits, a factor overlooked despite its critical importance for flight safety. This safety filter adjusts the command from the operator to ensure safe and stable aerial manipulation and avoid motor saturation. The adjustment made by the filter is mapped to haptic feedback, which is intuitive to the operator and conveys information on physical interaction and impending motor saturation. By actual experiments with a hexarotor-based omnidirectional aerial manipulator, we demonstrate that the proposed method avoids haptic feedback during free-flight, provides directionally consistent feedback under physical interaction, and can be operated for diverse manipulative tasks. Moreover, an ablation study further shows that the saturation filter improves interaction stability by explicitly preventing motor saturation and informing the operator of corrective actions.