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Biologically inspired robotics /
~
Liu, Yunhui.
Biologically inspired robotics /
紀錄類型:
書目-語言資料,印刷品 : Monograph/item
杜威分類號:
629.8/92
書名/作者:
Biologically inspired robotics // edited by Yunhui Liu and Dong Sun.
其他作者:
Liu, Yunhui.
出版者:
Boca Raton, FL : : Taylor & Francis/CRC Press,, c2012.
面頁冊數:
xv, 324 p. : : ill. ;; 24 cm.
標題:
Biomimicry.
標題:
Biomechanics.
標題:
Robotics.
標題:
Bionics.
ISBN:
9781439854884 (hbk.) :
ISBN:
1439854882 (hbk.)
書目註:
Includes bibliographical references and index.
摘要、提要註:
"Based on a selection of presentations from the 2009 IEEE International Conference on Robotics and Biomimetics, this reference presents cutting-edge research in the field. The 16 chapters, rewritten to include extra detail and analysis, cover robotic design, micro/nano robots for bio-systems and biomedicine, and biological measurement and actuation. A section on cybernetics is also included. Written for graduate students and researchers in control engineering and robotics, this text helps readers understand research trends, future development of bio-robotics, and biologically inspired robot design. It includes a wealth of figures and hundreds of equations"--Provided by publisher.
Biologically inspired robotics /
Biologically inspired robotics /
edited by Yunhui Liu and Dong Sun. - Boca Raton, FL :Taylor & Francis/CRC Press,c2012. - xv, 324 p. :ill. ;24 cm.
Includes bibliographical references and index.
"Based on a selection of presentations from the 2009 IEEE International Conference on Robotics and Biomimetics, this reference presents cutting-edge research in the field. The 16 chapters, rewritten to include extra detail and analysis, cover robotic design, micro/nano robots for bio-systems and biomedicine, and biological measurement and actuation. A section on cybernetics is also included. Written for graduate students and researchers in control engineering and robotics, this text helps readers understand research trends, future development of bio-robotics, and biologically inspired robot design. It includes a wealth of figures and hundreds of equations"--Provided by publisher.
ISBN: 9781439854884 (hbk.) :NTD 3,072
LCCN: 2011008352Subjects--Topical Terms:
468321
Biomimicry.
LC Class. No.: TJ211 / .B5553 2012
Dewey Class. No.: 629.8/92
Biologically inspired robotics /
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"Based on a selection of presentations from the 2009 IEEE International Conference on Robotics and Biomimetics, this reference presents cutting-edge research in the field. The 16 chapters, rewritten to include extra detail and analysis, cover robotic design, micro/nano robots for bio-systems and biomedicine, and biological measurement and actuation. A section on cybernetics is also included. Written for graduate students and researchers in control engineering and robotics, this text helps readers understand research trends, future development of bio-robotics, and biologically inspired robot design. It includes a wealth of figures and hundreds of equations"--Provided by publisher.
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"Biologically inspired robotics is an interdisciplinary subject between robotics and biology that involves how to apply biological ideas and phenomena to engineering problems in robotics (biomimetics), and how to apply robotics technology to understanding of biological systems and their behaviors (bio-robotic modeling/analysis). The efforts in biologically inspired robotics are not just restricted to research work in laboratories, their novel applications are also being extensively explored in services, education, rehabilitation, medical care and other sectors. The objective of this book is to introduce the latest efforts in research of biologically inspired robotics, covering both biomimetics (with chapters in biologically inspired robot design and control, bio-sensing, bio-actuation, and micro/nano bio-robotic systems) and bio-robotic modeling/analysis (discussing human hand motion recognition using biological signals, modeling of human brain activities, characterization of cell properties using robotic systems). In order to provide readers a better understanding on organization of this book, the content is classified into four parts: (1) biologically inspired robot design and control, (2) micro/nano bio-robotic systems, (3) biological measurement and actuation, and (4) applications of robotics technology to biological problems"--Provided by publisher.
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