Human-robot gait coordination and interaction
Human-robot gait coordination and interaction
批准号:
RGPIN-2019-05221
负责人:
Wu, Amy
金额:
$1.97万
依托单位:
依托单位国家:
加拿大
项目类别:
Discovery Grants Program - Individual
财政年份:
2021
资助国家:
加拿大
项目状态:
已结题
起止时间:
2021-01-01 至 2022-12-31
中文摘要
机器人自动化在我们的生活中扮演着重要的角色,尤其是在提高仓库和工厂的生产力和工作场所安全等幕后活动中。然而,它们在个人或家庭应用中提供类似好处的速度很慢。一个限制因素是,很难制造出能够在人类居住的相同环境中导航的机器。双足行走为实现这种个人机器人伴侣提供了巨大的潜力。然而,目前的步行机器人过于昂贵或危险,无法广泛使用。这限制了普通公众和对改进这些系统感兴趣的研究人员对它们的访问。由于缺乏适当的技术,很少有人研究人-机器人配对行走中最基本的相互作用。为了最终实现与人类无缝互动的个人移动机器人伴侣,我的创新研究计划将解决协调和可访问性两个问题。我提出的研究重点是调查与人类和机器人并排行走的机械和能量后果。我的短期目标是用可接近的二维制造技术制造动态的、可行走的机器人,并利用这些机器人来获得以前无法获得的对配对的人类和人类机器人行走的见解。hqp将接受人体测试程序的培训,包括运动测量和分析,以及机电一体化系统设计。具体的研究调查包括通过干扰机器人的步频和腿长来控制配对行走过程中首选步态模式的选择机制,比较人类在用腿系统和轮式系统行走时的步态行为,以及确定机器人是否可以影响人类正常或异常的步态。这个项目只是理解和利用人机步态交互的长期努力的开始,这将有利于广泛的领域。在机器人领域,项目成果将展示具有成本效益的设计策略,以帮助研究人员降低进入研究腿部运动的门槛。生物力学家将对配对行走过程中人类行为的决定因素有更深入的了解,这将有助于步态康复。对于普通大众来说,无处不在的机器人劳动力可以通过将人类从危险、关键或平凡的任务中解放出来,创造社会经济效益。对加拿大来说,这可能包括重要的经济活动,如伐木和采矿。随着该国人口持续快速老龄化,这些移动机器人伴侣可以通过提供价格合理的24小时护理来帮助老年人。根据我的研究计划,两足行走的机器人伴侣可能给社会和科学带来的机会和好处,以前只被设想为小说,将更接近现实。
英文摘要
Robotic automation plays an important role in our lives, especially in behind-the-scenes activities like improving productivity and workplace safety in warehouses and factories. However, they have been slow to provide similar benefits in personal or domestic applications. One limiting factor is the difficulty in building machines that can navigate the same environments humans inhabit. Bipedal walking offers remarkable potential for implementing such personal robot companions. However, current walking robots are too expensive or dangerous to be deployed for widespread use. This limits their accessibility to the general public and to researchers interested in improving those systems. Due to the lack of appropriate technology, few have examined even the most basic interactions in human-robot paired walking. To finally enable personal, ambulatory robot companions that interact seamlessly with humans, my innovative research program will address both problems of coordination and accessibility. My proposed research focuses on investigating the mechanical and energetic consequences of paired side-by-side walking with humans and robots. My short-term goals are to build dynamic, walking robots with approachable, two-dimensional manufacturing techniques and to exploit these robots to gain previously unattainable insights into paired human-human and human-robot walking. HQPs will be trained in human subject testing procedures, including movement measurement and analysis, and mechatronics system design. Specific research investigations include the mechanisms governing the selection of preferred gait patterns during paired walking by perturbing robot step frequency and leg length, comparing human gait behavior when walking with a legged system versus a wheeled system, and determining if robots can influence humans to walk with normal or abnormal gaits. This program is just the beginning of a long effort to understand and leverage human-robot gait interaction, which will benefit a broad range of fields. In robotics, program outcomes will demonstrate cost-effective design strategies to help lower the barrier to entry for researchers to participate in studying legged locomotion. Biomechanists will develop a deeper understanding of the determinants of human behavior during paired walking, insights which could aid gait rehabilitation. For the general public, a ubiquitous robot-based workforce can create socio-economic benefits by liberating humans from dangerous, critical, or mundane tasks. For Canada, this could include important economic activities such as logging and mining. As the country's population continues to age rapidly, these ambulatory robot companions could be employed to assist the elderly, by providing affordable, 24-hour care. Following my research program, the opportunities and benefits to society and science that are possible through bipedal walking robot companions, that have only before been envisioned as fiction, will move closer to reality.
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会议论文
Human-robot gait coordination and interaction
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批准号:RGPIN-2019-05221
-
项目类别:Discovery Grants Program - Individual
-
资助金额:$1.97万
-
财政年份:2022
-
负责人:Wu, Amy
-
依托单位:
Human-robot gait coordination and interaction
-
批准号:RGPIN-2019-05221
-
项目类别:Discovery Grants Program - Individual
-
资助金额:$1.97万
-
财政年份:2020
-
负责人:Wu, Amy
-
依托单位:
Human-robot gait coordination and interaction
-
批准号:RGPIN-2019-05221
-
项目类别:Discovery Grants Program - Individual
-
资助金额:$1.97万
-
财政年份:2019
-
负责人:Wu, Amy
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依托单位:
Human-robot gait coordination and interaction
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批准号:DGECR-2019-00491
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项目类别:Discovery Launch Supplement
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资助金额:$0.91万
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财政年份:2019
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负责人:Wu, Amy
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依托单位:
国内基金
海外基金
引入昆虫复视机制的粒子滤波算法及其视觉伺服应用研究
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批准号:61175096
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项目类别:面上项目
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资助金额:58.0万元
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批准年份:2011
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负责人:赵清杰
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依托单位: