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Collaborative Research: CRI: IAD: Research/Education Infrastructure Based on Modular Miniature Robot Teams

Collaborative Research: CRI: IAD: Research/Education Infrastructure Based on Modular Miniature Robot Teams
协作研究:CRI:IAD:基于模块化微型机器人团队的研究/教育基础设施
批准号:
0936710
负责人:
Ibrahim Isler
金额:
$33.87万
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2008
资助国家:
美国
项目状态:
已结题
起止时间:
2008-08-15 至 2013-01-31

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中文摘要
翻译
提案编号:CNS 07-07939 07- 08344 PI(s): 易卜拉欣?伊斯勒 Papanikolopoulos,Nikolaos Drineas,彼得罗斯; Trinkle,Jeffrey He,Tian机构:明尼苏达大学伦斯勒理工学院-双城特洛伊,纽约12180-3522 Minneapolis,MN 55455- 5200标题:IAD:Collab Rsch:基于模块化微型机器人系统的研究/教育基础设施项目建议:这个合作项目,开发一个模块化的硬件和软件基础设施(微型机器人与相关软件),旨在确定完成任务所需的最低能力,这对大多数机器人传感器应用至关重要。这项工作涉及调查单个单元的能力与整个机器人团队的集体能力之间的关系。主要的创新在于根据各个单元的能力为研究和教育创造了灵活的设计范围。在低端的频谱,基本设计“探索者”,一个机器人的基础上Gumstix单位和早期的机器人设计从一个机构,提供了一个廉价的,但显着强大的解决方案。在高端,平台“MicroVision”,一个基于英特尔奔腾M处理器和RoboAudioStix板的机器人,使用标准的现成硬件和开源视频算法提供实时视频流和处理。两种设计的模块化允许添加特殊的硬件功能。该基础设施旨在提供低成本、易于使用的平台,以支持研究,并可用于课程。具体来说,这一发展使机器人传感器网络系统的设计,可以。在网络拓扑频繁变化的情况下,通过多跳进行可靠和高效的通信;迅速准确地识别机器人团队成员之间的相对位置,以便进行有效协调;使有袋类动物能够进行节能机动;.提供具有空间、时间和时空覆盖保证的协作感测;以及。更广泛的影响:这一基础设施将用于高级论文,K-12学生将通过学校访问和科学实地考察日参与其中。将举办一年一度的机器人夏令营。这些活动将得到国家工程和技术教育中心(NCETE)的帮助。与伯里亚和史密斯学院以及弗吉尼亚大学的协调促进了本科生和少数民族服务机构之间的交流。
英文摘要
Proposal #: CNS 07-07939 07-08344PI(s): Isler, Ibrahim V. Papanikolopoulos, Nikolaos Drineas, Petros; Trinkle, Jeffrey He, TianInstitution: Rensselaer Polytechnic Institute University of Minnesota - Twin Cities Troy, NY 12180-3522 Minneapolis, MN 55455-5200Title: IAD: Collab Rsch: Research/Education Infrastructure Based on Modular Miniature Robot SystemsProject Proposed:This collaborative project, developing a modular hardware and software infrastructure (miniature robots with the pertinent software), aims to identify minimum capabilities required for accomplishing tasks which are crucial for most robotics-sensor applications. The work involves investigating the relationship between the capabilities of individual units and the collective capabilities of the entire robotic team. The major innovation lies in the creation of a flexible design spectrum for both research and education based on the capabilities of the individual units. On the lower end of the spectrum, the basic design "Explorer," a robot based on a Gumstix unit and earlier robot designs from one of the institutions, provides an inexpensive and yet significantly powerful solution. On the higher end, the platform "MicroVision," a robot based on the Intel Pentium M processor and RoboAudioStix board, provides real-time video streaming and processing using standard off-the-shelf hardware and open-source video algorithms. The modularity of both designs allows the addition of special hardware capabilities. The infrastructure aims at low-cost, easy-to-use platforms that support research and can be adopted into courses. Specifically, this development enables design of robotics sensor-network systems that can. Communicate reliably and efficiently via multi-hop in the presence of frequent network topology changes;. Identify relative positions among members of a robotic team promptly and accurately for effective coordination;. Enable energy-efficient marsupial maneuvering;. Provide collaborative sensing with spatial, temporal, and spatiotemporal coverage guarantees; and. Interact with environments through grasping and manipulation.Broader Impacts: This infrastructure will be used for senior theses and K-12 students will be engaged via school visits and science field days. An annual Robot Camp will be held. The activities will be helped by the National Center for Engineering and Technology Education (NCETE). Coordination with Berea and Smith College, as well as UVA ascertains exchange among undergraduate- and minority-serving institutions.
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  • 项目类别:
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  • 资助金额:
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  • 财政年份:
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  • 项目类别:
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  • 资助金额:
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  • 财政年份:
    2016
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