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Bio-inspired Emergent Control Of Locomotion Systems

motion control and the related circuit architecture.Bio-inspired Emergent Control of Locomotion Systems provides researchers with a guide to the;

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2013 Proceedings of the ASME 2013 Dynamics Systems and Control Conference-(DSCC2013)

-Inspired Control and its Applications Bio-Medical and Bio-Mechanical Systems Biomedical Robots and Rehabilitation Bipeds and Locomotion Control;

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Nonlinear Circuits and Systems for Neuro inspired Robot Control

extrapolation to modeling, implementation, and realization of the analogous emergent features in artificial but bio-inspired robots: an emerging;

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Bio-Inspired Computing and Networking

Gregor III The book explores bio-inspired topology control and reconfiguration methods, as well as bio-inspired localization, synchronization;

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Bio-Inspired Computing and Networking

explores bio-inspired topology control and reconfiguration methods, as well as bio-inspired localization, synchronization, and mobility approaches;

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Bioinspired Legged Locomotion

, each chapter brings outlines, and an abstract, introduction, new developments, and a summary. Beginning with bio-inspired locomotion;

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Adaptive Control of Bio Inspired Manufacturing Systems

of manufacturing control systems. It develops various bio-inspired intelligent approaches for multiple applications in order to efficiently generate;

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Adaptive Control of Bio Inspired Manufacturing Systems

of manufacturing control systems. It develops various bio-inspired intelligent approaches for multiple applications in order to efficiently generate;

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Biomimetic Technologies

intelligence are reviewed for such uses as bio-inspired climbing robots and multi-robot systems, microrobots with CMOS IC neural networks locomotion;

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Bio-Inspired Self-Organizing Robotic Systems

environments. Compared with classical control methods for robotic systems, the major advantages of bio-inspired self-organizing robotic systems;

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Intelligent Robotics and Applications

. Part II: power-assisted system and control; bio-inspired wall climbing robot; underwater acoustic and optical signal processing for;

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Intelligent Robotics and Applications

. Part II: power-assisted system and control; bio-inspired wall climbing robot; underwater acoustic and optical signal processing for;

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Intelligent Robotics and Applications

. Part II: power-assisted system and control; bio-inspired wall climbing robot; underwater acoustic and optical signal processing for;

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Intelligent Robotics and Applications

. Part II: power-assisted system and control; bio-inspired wall climbing robot; underwater acoustic and optical signal processing for;

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Intelligent Robotics and Applications

. Part II: power-assisted system and control; bio-inspired wall climbing robot; underwater acoustic and optical signal processing for;

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Intelligent Robotics and Applications

. Part II: power-assisted system and control; bio-inspired wall climbing robot; underwater acoustic and optical signal processing for;

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Bio-Inspired Hybrid Intelligent Systems For Image Analysis And Pattern Recognition

Bio-Inspired Hybrid Intelligent Systems for Image Analysis and Pattern Recognition comprises papers on diverse aspects of bio-inspired;

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Design and Operation of Human Locomotion Systems

Design and Operation of Locomotion Systems examines recent advances in locomotion systems with multidisciplinary viewpoints, including;

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Hybrid Control and Motion Planning of Dynamical Legged Locomotion

This book addresses the need in the field for a comprehensive review of motion planning algorithms and hybrid control methodologies for;

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Computational Vision and Bio Inspired Computing

This book includes selected papers from the 4th International Conference on Computational Vision and Bio Inspired Computing (ICCVBIC 2020;

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Bio-inspired Networking

Bio-inspired techniques are based on principles, or models, of biological systems. In general, natural systems present remarkable;

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Climbing And Walking Robots

systems; control architecture and simulation; control approaches; crawling locomotion; multi-legged walking; biped locomotion; climbing; and;

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Feedback Control of Dynamic Bipedal Robot Locomotion

Bipedal locomotion is among the most difficult challenges in control engineering. Most books treat the subject from a quasi-static;

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Human Modeling for Bio-Inspired Robotics

Human Modelling for Bio-inspired Robotics: Mechanical Engineering in Assistive Technologies presents the most cutting-edge research;

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Design and Control of Intelligent Robotic Systems

in physical systems. An overview on the applications of computational intelligence in bio-inspired robotics is given in Chapter 1 by M. Begum and F;

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Bio-inspired Algorithms for Engineering

Bio-inspired Algorithms for Engineering builds a bridge between the proposed bio-inspired algorithms developed in the past few decades and;

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