Lee, Dongmyoung und Li, Chengxi und Lee, Dongheui (2026) DexTwist: Dexterous Hand Retargeting for Twist Motion via Mixed Reality-Based Teleoperation. In: 2026 IEEE International Conference on Advanced Robotics and its Social Impacts, ARSO 2026, Seiten 149-154. IEEE. IEEE Workshop on Advanced Robotics and its Social Impacts, ARSO, 2026-06-10 - 2026-06-12, Vienna, Austria. doi: 10.1109/ARSO68304.2026.11536116. ISBN 979-833156445-2. ISSN 2162-7568.
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Offizielle URL: https://ieeexplore.ieee.org/document/11536116
Kurzfassung
Dexterous teleoperation via Mixed Reality (MR)-based interfaces offers a scalable paradigm for transferring human manipulation skills to dexterous robot hands. However, conventional retargeting approaches that minimize kinematic dissimilarity (e.g., joint angle or fingertip position error) often fail in contact-rich rotational manipulation, such as cap opening, key turning, and bolt screwing. This failure stems from the embodiment gap: mismatched link lengths, joint axes/limits, and fingertip geometry can cause direct pose imitation to induce tangential fingertip sliding rather than stable object rotation, resulting in screw axis drift, contact slip, and grasp instability. To address this, we propose DexTwist, a functional twist-retargeting framework for MR-based dexterous teleoperation. DexTwist detects a tripod pinch, estimates the operator's intended screw axis and twist magnitude, and applies a real-time residual joint-space refinement that tracks turning progress while regularizing the robot tripod geometry. The refinement minimizes a virtual-object objective defined by turning angle, screw axis consistency, fingertip closure, and tripod stability. Simulation and real-world experiments show that DexTwist improves turning angle tracking and screw axis stability compared with a vector-based retargeting baseline.
| elib-URL des Eintrags: | https://elib.dlr.de/225545/ | ||||||||||||||||
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| Dokumentart: | Konferenzbeitrag (Vortrag) | ||||||||||||||||
| Titel: | DexTwist: Dexterous Hand Retargeting for Twist Motion via Mixed Reality-Based Teleoperation | ||||||||||||||||
| Autoren: |
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| Datum: | 1 Juni 2026 | ||||||||||||||||
| Erschienen in: | 2026 IEEE International Conference on Advanced Robotics and its Social Impacts, ARSO 2026 | ||||||||||||||||
| Referierte Publikation: | Ja | ||||||||||||||||
| Open Access: | Nein | ||||||||||||||||
| Gold Open Access: | Nein | ||||||||||||||||
| In SCOPUS: | Ja | ||||||||||||||||
| In ISI Web of Science: | Nein | ||||||||||||||||
| DOI: | 10.1109/ARSO68304.2026.11536116 | ||||||||||||||||
| Seitenbereich: | Seiten 149-154 | ||||||||||||||||
| Verlag: | IEEE | ||||||||||||||||
| ISSN: | 2162-7568 | ||||||||||||||||
| ISBN: | 979-833156445-2 | ||||||||||||||||
| Status: | veröffentlicht | ||||||||||||||||
| Stichwörter: | Robotic teleoperation | ||||||||||||||||
| Veranstaltungstitel: | IEEE Workshop on Advanced Robotics and its Social Impacts, ARSO | ||||||||||||||||
| Veranstaltungsort: | Vienna, Austria | ||||||||||||||||
| Veranstaltungsart: | internationale Konferenz | ||||||||||||||||
| Veranstaltungsbeginn: | 10 Juni 2026 | ||||||||||||||||
| Veranstaltungsende: | 12 Juni 2026 | ||||||||||||||||
| Veranstalter : | IEEE | ||||||||||||||||
| HGF - Forschungsbereich: | Luftfahrt, Raumfahrt und Verkehr | ||||||||||||||||
| HGF - Programm: | Raumfahrt | ||||||||||||||||
| HGF - Programmthema: | Robotik | ||||||||||||||||
| DLR - Schwerpunkt: | Raumfahrt | ||||||||||||||||
| DLR - Forschungsgebiet: | R RO - Robotik | ||||||||||||||||
| DLR - Teilgebiet (Projekt, Vorhaben): | R - Basistechnologien [RO] | ||||||||||||||||
| Standort: | Oberpfaffenhofen | ||||||||||||||||
| Institute & Einrichtungen: | Institut für Robotik und Mechatronik (ab 2013) | ||||||||||||||||
| Hinterlegt von: | Strobl, Dr.-Ing. Klaus H. | ||||||||||||||||
| Hinterlegt am: | 15 Jul 2026 17:32 | ||||||||||||||||
| Letzte Änderung: | 15 Jul 2026 17:32 |
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