PAPER / ARXIV:2609.19194
Andrew S. Morgan , Gregory Xie , Capprin Bass , Rachel Thomasson , Chunpeng Wang , Erfan Shahriari , Harrison Busa , Oluwaseun Araromi , Joseph Aronov , Michael Burgess , Velin D. Dimitrov , Matthew A. Estrada , Faris Hamdi , Samuel Kendig , Taeyoon Lee , Jose Oscar Mur-Miranda , Emma Sommers , Paul Titchener , Margaret Wang , Achu Wilson , Mark Yeatman , Osman Dogan Yirmibesoglu , Alfred A. Rizzi , Annan Mozeika , Nicolas Rojas , Lael Odhner
RESUMO
AthenaZero is a bimanual manipulator designed to minimize inertia without compromising control authority. By utilizing quasi-direct drive actuation and transmission remotization techniques, the system achieves an effective endpoint mass comparable to that of a human---about an order of magnitude less than conventional robot manipulators. This characteristic, combined with its inherent torque transparency, makes AthenaZero exceptionally well-suited for dynamic manipulation. We describe the methodology} that led to this design and demonstrate the robot's capabilities on three baseball-inspired tasks: throwing, catching, and batting, which showcase complex interactions on human-comparable timescales where milliseconds matter. AthenaZero was capable of throwing at speeds in excess of 30 m/s, with catching and batting at speeds in excess of 14 m/s over a short 7.3 m distance. Batting practice and a game of catch were subsequently performed in robot-to-robot and human-to-robot variations, showcasing the efficacy and adaptability of our system in tasks that require high acceleration.
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