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Collaborative Research: RoboBees: A Convergence of Body, Brain and Colony

Collaborative Research: RoboBees: A Convergence of Body, Brain and Colony
合作研究:RoboBees:身体、大脑和蜂群的融合
批准号:
0926148
负责人:
Robert Wood
金额:
$930.2万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2009
资助国家:
美国
项目状态:
已结题
起止时间:
2009-09-01 至 2014-08-31

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"This award is funded under the American Recovery and Reinvestment Act of 2009(Public Law 111-5)."RoboBees: A convergence of body, brain, and colonyJ. Ayers, G. Barrows, D. Brooks, S. Combes, L. Mahadevan, G. Morrisett, R. Nagpal, S. Ramanathan, G.-Y. Wei, M. Welsh, R.J. Wood, T. ZicklerThis project entails the creation of a coordinated colony of robotic bees, RoboBees. Research topics are split between the ?body?, ?brain?, and ?colony?. Topics within the ?body? include all aspects of the flight apparatus, propulsion, and power systems. The ?brain? involves research on the electronic nervous system equivalent of a bee?s brain including circuits for sensing and decision-making. Finally, research within the ?colony? entails communication and control algorithms that will enable performance well beyond the capabilities of an individual. Each of these research areas is drawn together by the challenges of recreating various functionalities of natural bees. One such example is pollination: Bees coordinate to interact with complex natural systems by using a diversity of sensors, a hierarchy of task delegation, unique communication, and an effective flapping-wing propulsion system. Pollination and other agricultural tasks will serve as challenge thrusts throughout the life of this project. Such tasks require expertise across a broad spectrum of scientific topics. The research team includes experts in biology, computer science, electrical and mechanical engineering, and materials science, assembled to address fundamental challenges in developing RoboBees.Beyond pollination and assisted agriculture, coordinated robotic insects will have substantial impact upon rescue workers for search and rescue and hazardous environment exploration applications. High fidelity environmental monitoring, traffic monitoring, and mobile sensor networks are just a few examples of the future impact of coordinated RoboBees. Since each RoboBee component must be developed from scratch, technological fallout will be prevalent throughout research on the body, brain, and colony. This new technology and the exciting and tangible nature of robotic bees present a tremendous opportunity to catalyze young minds and encourage their participation in science and engineering. An integral part of this program is the development of a museum exhibit, in partnership with the Museum of Science, Boston, which will explore the life of a bee and the technologies required to create RoboBees. ¬For more information, please visit: http://robobees.seas.harvard.edu
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