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Self-Organizing Robots (Springer Tracts in Advanced Robotics) epub download

by Haruhisa Kurokawa,Satoshi Murata


self-organizing robots; and the future of self-organizing robots. All topics are illustrated with many up-to-date examples, including those from the authors’ own work

self-organizing robots; and the future of self-organizing robots. All topics are illustrated with many up-to-date examples, including those from the authors’ own work. The book does not require advanced knowledge of mathematics to be understood, and will be of great benefit to students in the robotics discipline, including in the areas of mechanics, control, electronics, and computer science.

Springer Tracts in Advanced Robotics. Self-Organizing Robots. Authors: Murata, Satoshi, Kurokawa, Haruhisa. Show all. Table of contents (10 chapters).

Электронная книга "Self-Organizing Robots", Satoshi Murata, Haruhisa Kurokawa. Эту книгу можно прочитать в Google Play Книгах на компьютере, а также на устройствах Android и iOS. Выделяйте текст, добавляйте закладки и делайте заметки, скачав книгу "Self-Organizing Robots" для чтения в офлайн-режиме. When we see biological organisms as autonomous distributed systems, cells are the components of these organisms, because each cell behaves autonomously as an individual entity, taking in substances and energy from the external world, carrying out its own reactions, responding to environmental changes, and even reproducing itself.

Murata, Satoshi; Kurokawa, Haruhisa (2012). From Biology, Via Robot, to Molecule. Springer Tracts in Advanced Robotics. ISBN 978-4-431-54054-0. Self-Reconfigurable Robot: Shape-Changing Cellular Robots Can Exceed Conventional Robot Flexibility, by Murata & Kurokawa, published in IEEE Robotics & Automation Magazine March 2007. selection technique for the reconfigurable modular robot

self-organizing robots; and the future of self-organizing robots.

By Satoshi Murata Satoshi Murata Close. 1 2 3 4 5. Want to Read.

self-organizing robots; and the future of self-organizing robots. All topics are illustrated with many up-to-the-date examples, including those form the authors' own work.

Self-Organizing Robots book. Satoshi Murata, Haruhisa Kurokawa. This book examines the feasibility of creating self-organizing robots, particularly at the molecular level, within current mechanical engineering limitations. It covers relevant topics such as design philosophy and self-organization in biological systems.

It is man’s ongoing hope that a machine could somehow adapt to its environment by reorganizing itself. This is what the notion of self-organizing robots is based on. The theme of this book is to examine the feasibility of creating such robots within the limitations of current mechanical engineering. The topics comprise the following aspects of such a pursuit: the philosophy of design of self-organizing mechanical systems; self-organization in biological systems; the history of self-organizing mechanical systems; a case study of a self-assembling/self-repairing system as an autonomous distributed system; a self-organizing robot that can create its own shape and robotic motion; implementation and instrumentation of self-organizing robots; and the future of self-organizing robots. All topics are illustrated with many up-to-date examples, including those from the authors’ own work. The book does not require advanced knowledge of mathematics to be understood, and will be of great benefit to students in the robotics discipline, including in the areas of mechanics, control, electronics, and computer science. It is also an important source for researchers who wish to investigate the field of robotics or who have an interest in the application of self-organizing phenomena.

Self-Organizing Robots (Springer Tracts in Advanced Robotics) epub download

ISBN13: 978-4431540540

ISBN: 4431540547

Author: Haruhisa Kurokawa,Satoshi Murata

Category: Computers and Technology

Subcategory: Computer Science

Language: English

Publisher: Springer; 2012 edition (January 19, 2012)

Pages: 254 pages

ePUB size: 1710 kb

FB2 size: 1804 kb

Rating: 4.8

Votes: 660

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