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Two-wheeled mobile manipulator systems have many advantages compared to the statically stable systems. Due to the highly nonlinear underactuated structure (more degrees of freedom than the number of actuators), it is difficult to control the motion of wheels and stability of underactuated joint at the same time by wheels. In this paper, we deal with motion control of the wheels through CoG (Center...
This paper presents an advanced control architecture for the full-scale humanoid robot RH-1. The pose control of the prototype is aimed in order to achieve mobile manipulation in collaborative working environments where humans and robots must share the same tasks and space. The kinematic model and a simplified dynamic model of the robot are given. All the models and algorithms are verified by several...
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