RA-L 2019154 citations

CENTAURO: A Hybrid Locomotion and High Power Resilient Manipulation Platform

Navvab Kashiri, Lorenzo Baccelliere, Luca Muratore, Arturo Laurenzi, Zeyu Ren, Enrico Mingo Hoffman, Malgorzata Kamedula, Giuseppe Francesco Rigano

Abstract

Despite the development of a large number of mobile manipulation robots, very few platforms can demonstrate the required strength and mechanical sturdiness to accommodate the needs of real-world applications with high payload and moderate/harsh physical interaction demands, e.g., in disaster-response scenarios or heavy logistics/collaborative tasks. In this letter, we introduce the design of a wheeled-legged mobile manipulation platform capable of executing demanding manipulation tasks, and demonstrating significant physical resilience while possessing a body size (height/width) and weight compatible to that of a human. The achieved performance is the result of combining a number of design and implementation principles related to the actuation system, the integration of body structure and actuation, and the wheeled-legged mobility concept. These design principles are discussed, and the solutions adopted for various robot components are detailed. Finally, the robot performance is demonstrated in a set of experiments validating its power and strength capability when manipulating heavy payload and executing tasks involving high impact physical interactions.

BibTeX
@inproceedings{ral2019_centauroahybridl,
  title = {CENTAURO: A Hybrid Locomotion and High Power Resilient Manipulation Platform},
  author = {Navvab Kashiri and Lorenzo Baccelliere and Luca Muratore and Arturo Laurenzi and Zeyu Ren and Enrico Mingo Hoffman and Malgorzata Kamedula and Giuseppe Francesco Rigano and Jörn Malzahn and Stefano Cordasco and Paolo Guria and Alessio Margan and Nikos G. Tsagarakis},
  booktitle = {RA-L 2019},
  year = {2019}
}
CENTAURO: A Hybrid Locomotion and High Power Resilient Manipulation Platform · RA-L 2019