{"status":"ok","message-type":"work","message-version":"1.0.0","message":{"indexed":{"date-parts":[[2026,5,2]],"date-time":"2026-05-02T09:58:52Z","timestamp":1777715932153,"version":"3.51.4"},"reference-count":70,"publisher":"SAGE Publications","issue":"13","license":[{"start":{"date-parts":[[2010,5,12]],"date-time":"2010-05-12T00:00:00Z","timestamp":1273622400000},"content-version":"tdm","delay-in-days":0,"URL":"https:\/\/journals.sagepub.com\/page\/policies\/text-and-data-mining-license"}],"content-domain":{"domain":[],"crossmark-restriction":false},"short-container-title":["The International Journal of Robotics Research"],"published-print":{"date-parts":[[2010,11]]},"abstract":"<jats:p>In this paper we aim at extending imitation learning to physical human\u2014robot interaction (pHRI) including contact transitions (from non-contact to contact and vice versa). For interactive learning of pHRI, the paper raises four key issues: (1) motion imitation, (2) understanding motion primitives, (3) understanding interaction primitives, and (4) physical contact establishment. These issues are solved by (1) marker control, (2) mimesis model, (3) mimetic communication model, and (4) real-time motion reshaping and impedance control, respectively. The simple human motion imitation is realized by a direct marker control method in which the robot is virtually connected to the markers attached to the human via virtual springs. Learning procedures are based on \u2018\u2018imitation of a human\u2019\u2019 and \u2018\u2018active involvement\u2019\u2019 of the robot during the learning. The \u2018\u2018imitation of a human\u2019\u2019 scheme provides efficient learning. The \u2018\u2018active involvement\u2019\u2019 scheme supports incremental learning and it also enables to acquire sensory information for physical contacts. By modifying the mimetic communication model proposed by Nakamura et al., we achieve communication in physical domain as well as the symbolic domain. The communication in the symbolic domain is realized through the concept of motion primitives and interaction primitives. In the physical domain, the trajectory of the motion primitive is reshaped in accordance with the human\u2019s motions in real-time. Moreover, for performing compliant contact motion, an appropriate impedance controller is integrated into the setting. All of the presented concepts are applied to \u2018\u2018high five\u2019\u2019-like interaction tasks and evaluated in experiments with a human-size humanoid robot.<\/jats:p>","DOI":"10.1177\/0278364910364164","type":"journal-article","created":{"date-parts":[[2010,5,12]],"date-time":"2010-05-12T20:35:13Z","timestamp":1273696513000},"page":"1684-1704","source":"Crossref","is-referenced-by-count":74,"title":["Mimetic Communication Model with Compliant Physical Contact in Human\u2014Humanoid                 Interaction"],"prefix":"10.1177","volume":"29","author":[{"given":"Dongheui","family":"Lee","sequence":"first","affiliation":[{"name":"Department of Electrical Engineering and Information Technology,                         Technical University of Munich, Munich, Germany"}],"role":[{"role":"author","vocabulary":"crossref"}]},{"given":"Christian","family":"Ott","sequence":"additional","affiliation":[{"name":"Institute of Robotics and Mechatronics, German Aerospace Center (DLR),         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