Perception-Action Cycle

Models, Architectures, and Hardware

Nonfiction, Computers, Advanced Computing, Theory, Health & Well Being, Medical, Specialties, Internal Medicine, Neuroscience, Science & Nature, Science
Cover of the book Perception-Action Cycle by , Springer New York
View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart
Author: ISBN: 9781441914521
Publisher: Springer New York Publication: February 2, 2011
Imprint: Springer Language: English
Author:
ISBN: 9781441914521
Publisher: Springer New York
Publication: February 2, 2011
Imprint: Springer
Language: English

The perception-action cycle is the circular flow of information that takes place between the organism and its environment in the course of a sensory-guided sequence of behaviour towards a goal. Each action causes changes in the environment that are analyzed bottom-up through the perceptual hierarchy and lead to the processing of further action, top-down through the executive hierarchy, toward motor effectors. These actions cause new changes that are analyzed and lead to new action, and so the cycle continues. The Perception-action cycle: Models, architectures and hardware book provides focused and easily accessible reviews of various aspects of the perception-action cycle. It is an unparalleled resource of information that will be an invaluable companion to anyone in constructing and developing models, algorithms and hardware implementations of autonomous machines empowered with cognitive capabilities. The book is divided into three main parts. In the first part, leading computational neuroscientists present brain-inspired models of perception, attention, cognitive control, decision making, conflict resolution and monitoring, knowledge representation and reasoning, learning and memory, planning and action, and consciousness grounded on experimental data. In the second part, architectures, algorithms, and systems with cognitive capabilities and minimal guidance from the brain, are discussed. These architectures, algorithms, and systems are inspired from the areas of cognitive science, computer vision, robotics, information theory, machine learning, computer agents and artificial intelligence. In the third part, the analysis, design and implementation of hardware systems with robust cognitive abilities from the areas of mechatronics, sensing technology, sensor fusion, smart sensor networks, control rules, controllability, stability, model/knowledge representation, and reasoning are discussed.

View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

The perception-action cycle is the circular flow of information that takes place between the organism and its environment in the course of a sensory-guided sequence of behaviour towards a goal. Each action causes changes in the environment that are analyzed bottom-up through the perceptual hierarchy and lead to the processing of further action, top-down through the executive hierarchy, toward motor effectors. These actions cause new changes that are analyzed and lead to new action, and so the cycle continues. The Perception-action cycle: Models, architectures and hardware book provides focused and easily accessible reviews of various aspects of the perception-action cycle. It is an unparalleled resource of information that will be an invaluable companion to anyone in constructing and developing models, algorithms and hardware implementations of autonomous machines empowered with cognitive capabilities. The book is divided into three main parts. In the first part, leading computational neuroscientists present brain-inspired models of perception, attention, cognitive control, decision making, conflict resolution and monitoring, knowledge representation and reasoning, learning and memory, planning and action, and consciousness grounded on experimental data. In the second part, architectures, algorithms, and systems with cognitive capabilities and minimal guidance from the brain, are discussed. These architectures, algorithms, and systems are inspired from the areas of cognitive science, computer vision, robotics, information theory, machine learning, computer agents and artificial intelligence. In the third part, the analysis, design and implementation of hardware systems with robust cognitive abilities from the areas of mechatronics, sensing technology, sensor fusion, smart sensor networks, control rules, controllability, stability, model/knowledge representation, and reasoning are discussed.

More books from Springer New York

Cover of the book Applied Inverse Problems by
Cover of the book Molecular Determinants of Head and Neck Cancer by
Cover of the book Integrative Weight Management by
Cover of the book Identity and Intimacy in Marriage by
Cover of the book Lie Groups: Structure, Actions, and Representations by
Cover of the book Ethnobotany and Biocultural Diversities in the Balkans by
Cover of the book Handbook of Endovascular Interventions by
Cover of the book Pediatric Genetics and Inborn Errors of Metabolism by
Cover of the book Teaching Creatively and Teaching Creativity by
Cover of the book Ultrasound in the Intensive Care Unit by
Cover of the book Trace Elements in the Terrestrial Environment by
Cover of the book Ecosystems, Evolution, and Ultraviolet Radiation by
Cover of the book Acneiform Eruptions in Dermatology by
Cover of the book National Intellectual Capital and the Financial Crisis in China, Hong Kong, Singapore, and Taiwan by
Cover of the book Feedback Strategies for Wireless Communication by
We use our own "cookies" and third party cookies to improve services and to see statistical information. By using this website, you agree to our Privacy Policy