Applications of Discrete Event and Hybrid Systems in Humanoid Robots
Toshimitsu Ushio, Keigo Kobayashi, Masakazu Adachi, Hideyuki Takahashi, Atsuhito Nakatani · IEICE Transactions on Fundamentals of Electronics Communications and Computer Sciences · 2004
This paper considers a motion planning method for humanoid robots. First, we review a modular state net which is a state net representing behavior of a part of the humanoid robots. Each whole body motion of the humanoid robots is represented by a combination of modular state nets for those parts. In order to obtain a feasible path of the whole body, a timed Petri net is used as an abstracted model of a set of all modular state nets. Next, we show an algorithm for constructing nonlinear dynamics which describes a periodic motion. Finally, we extend the state net in order to represent primitive periodic motions and their transition relation so that we can generate a sequence of primitive periodic motions satisfying a specified task.