A Neural Oscillatory Network Approach to the Biped Walking Pattern Generation Considering ZMP Condition
نویسندگان
چکیده
منابع مشابه
ZMP Based Reference Generation for Biped Walking Robots
Recent fifteen years witnessed fast improvements in the field of humanoid robotics. The human-like robot structure is more suitable to human environment with its supreme obstacle avoidance properties when compared with wheeled service robots. However, the walking control for bipedal robots is a challenging task due to their complex dynamics. Stable reference generation plays a very important ro...
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Biped robots have better mobility than conventional wheeled robots. The bio-inspired method based on a central pattern generator (CPG) can be used to control biped robot walking in a manner like human beings. However, to achieve stable locomotion, it is difficult to modulate the parameters for the neural networks to coordinate every degree of freedom of the walking robot. The zero moment point ...
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In this research, a stable biped walking pattern is generated using reinforcement learning. The biped walking pattern is chosen as a simple third order polynomial. To complete the walking pattern, four boundary conditions are needed. Initial position and velocity and final position and velocity of the joint are selected as boundary conditions. In order to find the proper boundary condition valu...
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Biped walking remains a difficult problem, and robot models can greatly facilitate our understanding of the underlying biomechanical principles as well as their neuronal control. The goal of this study is to specifically demonstrate that stable biped walking can be achieved by combining the physical properties of the walking robot with a small, reflex-based neuronal network governed mainly by l...
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This paper describes an online method generating walking patterns for biped humanoid robots having a trunk. Depending on the walking command, the motion patterns of the lower-limbs are created and connected to the prewalking patterns smoothly in online. For the stability of the biped robots, the trunk and the waist motion is generated by a walking stabilization control that is based on the ZMP ...
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ژورنال
عنوان ژورنال: IEEJ Transactions on Industry Applications
سال: 1999
ISSN: 0913-6339,1348-8163
DOI: 10.1541/ieejias.119.873