Collaborative Research: ITEST-Strategies: Human-Centered Robotics Experiences for Exploring Engineering, Computer Science, and Society
Collaborative Research: ITEST-Strategies: Human-Centered Robotics Experiences for Exploring Engineering, Computer Science, and Society
批准号:
1433414
负责人:
Selma Sabanovic
金额:
$37.12万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2014
资助国家:
美国
项目状态:
已结题
起止时间:
2014-09-01 至 2019-08-31
中文摘要
几十年来,让更多来自城市和农村地区的学生参与STEM领域和职业一直是国家STEM教育改革的前沿。研究表明,让这些学生参与与他们日常生活相关的STEM活动,对于提高他们对STEM的动力、兴趣、学习和参与至关重要。该项目将通过工程和计算机科学活动来解决这一需求,旨在帮助400名中学生和高中生掌握科学原理和技术设计的复杂性。我们的目标是激励和培养更多的目标人群中的学生,让他们了解这些原则和设计策略如何为更强大的教育和技术社会做出贡献。为此,该项目将采用一种教学和学习模式,在基于问题的学习和系统思考环境中整合以人为中心的机器人和基于远程呈现主题的活动。在这个项目中,以人为中心的机器人技术将涉及日常使用的机器人技术和应用的开发,而远程呈现机器人将实现更好的通信、操作和跨远距离探索。这种双重策略使得所提出的技术方法与阿拉斯加学生的日常需求高度相关。该项目将由来自费尔班克斯阿拉斯加大学电气工程和计算机科学系以及布卢明顿印第安纳大学信息与计算学院和学习与技术研究中心的学生和教师导师组成的跨学科团队进行。通过这一合作伙伴的努力,研究团队将开发一门课程,解决以人为本的机器人技术和远程呈现的技术和社会方面的问题,这是学生将学习的工程和计算机科学概念的基础。每年,学生将积极参与9个月的基于问题的学习策略,使用基于Arduino微控制器的两个基本开放架构平台。学生将能够通过设计变化和添加新的传感器、执行器、程序部件和其他技术相关功能来定制这些平台。用户友好的软件将帮助教师和导师帮助学生进行设计和重新设计。通过这种方法,学生将获得STEM知识和技能,这些知识和技能将对他们自己的个人生活有用,也可以与其他学生分享,这些学生可能患有慢性病,居住在偏远地区,居住在较低的48个州,甚至通过之前nsf支持的努力建立的国际关系。因此,该项目将以某种有意义的方式帮助学生开发适应人们日常环境、需求和实践的技术型产品,从而增加学生对STEM和STEM职业的动力和兴趣。
英文摘要
Involving more students from urban and rural areas in STEM fields and careers has been at the forefront of national STEM education reform efforts for decades. Research shows that engaging these students in STEM activities relevant to their everyday lives is critical to increasing their motivation, interest, learning, and participation in STEM. This project will address this need through engineering and computer science activities aimed at helping 400 middle and high school students grasp the intricacies of scientific principles and technology design. The goal is to inspire and prepare a greater number of students from the targeted population to understand how these principles and design strategies contribute to a stronger educational and technological society. To do this, the project will use a teaching and learning model that will integrate human-centered robotics and telepresence theme-based activities in a problem-based learning and systems thinking environment. In this project, human-centered robotics will involve the development of robotics technologies and applications for everyday use while telepresence robots will enable better communication, operation, and exploration across enormous distances. This dual strategy makes the proposed technological approach highly relevant to the daily needs of students in Alaska.The project will be conducted by an interdisciplinary team of students and faculty mentors from the Electrical Engineering and Computer Science Departments at the University of Alaska at Fairbanks and from the School of Informatics and Computing and the Center for Research on Learning and Technology at Indiana University at Bloomington. Through this partner-effort, the research team will develop a curriculum that addresses the technical and societal aspects of the human-centered robotics and telepresence that underlie the engineering and computer science concepts students will learn about. Each year, students will actively engage in a 9-month problem-based learning strategy using two basic open-architecture platforms based on the Arduino microcontroller. Students will be able to customize these platforms through design variations and with the addition of new sensors, actuators, program parts, and other technology-related functions. User-friendly software will help teachers and mentors assist students with their designs and redesigns. Through this approach, students will gain STEM knowledge and skills that will be useful to their own individual lives and for sharing with other students, who might be chronically ill, reside in remote places, live in the lower 48 states, or even internationally via ties established through prior NSF-supported efforts. Hence, this project will help student develop technology-based products adaptable to peoples' daily environments, needs, and practices in some meaningful way, which in turn, could increase student's motivation and interest in STEM and STEM careers.
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CHS: Large: Collaborative Research: Participatory Design and Evaluation of Socially Assistive Robots for Use in Mental Health Services in Clinics and Patient Homes
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批准号:1900683
-
项目类别:Standard Grant
-
资助金额:$64.35万
-
财政年份:2019
-
负责人:Selma Sabanovic
-
依托单位:
FW-HTF-P: The Future Matrix of Care: Communities, Networks, and Technologies
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批准号:1928547
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项目类别:Standard Grant
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资助金额:$15.0万
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财政年份:2019
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负责人:Selma Sabanovic
-
依托单位:
Precision Agriculture and Governing Nature
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批准号:1755078
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项目类别:Standard Grant
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资助金额:$1.46万
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财政年份:2018
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负责人:Selma Sabanovic
-
依托单位:
NRT: Interdisciplinary Training in Complex Networks and Systems
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批准号:1735095
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项目类别:Standard Grant
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资助金额:$299.98万
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财政年份:2017
-
负责人:Selma Sabanovic
-
依托单位:
CHS: Small: Applying Intergroup Psychology to Overcome Barriers in Human-Robot Interaction
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批准号:1617611
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项目类别:Standard Grant
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资助金额:$49.91万
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财政年份:2016
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负责人:Selma Sabanovic
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依托单位:
EAGER: Cultural models in social robotics - Comparative studies with users in the US and Japan
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批准号:1143712
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项目类别:Standard Grant
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资助金额:$5.0万
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财政年份:2011
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负责人:Selma Sabanovic
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依托单位:
国内基金
海外基金
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