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Switching Max-Plus models for legged locomotion

Gabriel A. D. Lopes, Robert Babuška, Bart De Schutter, Anette Boom

发表年份
2009
引用次数
11

摘要

We present a new class of gait generation and control algorithms based on the Switching Max-Plus modeling framework that allows for the synchronization of multiple legs of walking robots. Transitions between stance and swing phases of each leg are modeled as discrete events on a system described by max-plus-linear state equations. Different gaits and gait parameters can be interleaved by using different system matrices. Switching in max-plus-linear systems offers a powerful collection of modeling, analysis, and control tools that, in particular, allow for safe transitions between different locomotion gaits that may involve breaking/enforcing synchronization or changing the order of leg lift off events. Experimental validation of the proposed algorithms is presented by the implementation of various horse gaits on a simple quadruped robot.

关键词

SwingRobotControl theory (sociology)GaitSynchronization (alternating current)Computer scienceLift (data mining)State (computer science)Robot locomotionLegged robot

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