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Central Pattern Generators augmented with virtual model control for quadruped rough terrain locomotion

Mostafa Ajallooeian, Soha Pouya, Alexander Sproewitz, Auke Jan Ijspeert

Year
2013
Citations
56

Abstract

We present a modular controller for quadruped locomotion over unperceived rough terrain. Our approach is based on a computational Central Pattern Generator (CPG) model implemented as coupled nonlinear oscillators. Stumbling correction reflex is implemented as a sensory feedback mechanism affecting the CPG. We augment the outputs of the CPG with virtual model control torques responsible for posture control. The control strategy is validated on a 3D forward dynamics simulated quadruped robot platform of about the size and weight of a cat. To demonstrate the capabilities of the proposed approach, we perform locomotion over unperceived uneven terrain and slopes, as well as situations facing external pushes.

Keywords

Central pattern generatorTerrainModular designComputer scienceControl theory (sociology)Controller (irrigation)RobotTorqueGenerator (circuit theory)Mechanism (biology)

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