HCC: Small: Telecollaboration in Physical Spaces
HCC: Small: Telecollaboration in Physical Spaces
批准号:
1219261
负责人:
Matthew Turk
金额:
$50.0万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2012
资助国家:
美国
项目状态:
已结题
起止时间:
2012-09-01 至 2016-08-31
中文摘要
该项目的目标是开发和评估远程协作的新方法,有效地集成视频和语音通信,基于计算机视觉的跟踪和增强现实显示,以使参与者能够在远程交互中更充分地利用本地物理环境。在这种远距离传输范例中,远程和本地用户将使用从本地用户持有或佩戴的相机的实时图像导出的模型与物理环境交互,而不仅仅是被动地观看视频流。该方法的一个关键方面是它不需要准备环境或模型信息,因此它可以被视为“随时随地”的移动的通信技术。 智力优点:拟议中的研究建立在有前途的初步工作telecolecommunications显示世界稳定的“telepointers”的有效性-标记控制的远程用户坚持在一个动态的环境中的真实世界的参考。该项目将通过提供新的能力来整合真实的和虚拟的、口头的和空间的、本地的和远程的,从而推进远程协作的最新技术水平。为了使物理空间成为远程协作的一个更基本的部分,需要进行拟议的发展,并将进行重要的用户研究,以更好地了解物理接地远程交互的机会和局限性。 更广泛的影响:更好、更有吸引力的远程协作工具可以在生产力和环境后果方面产生巨大影响,因为改进的远程互动减少了对实际共处的需要,从而减少了旅行。该项目的教育影响包括培训和指导研究生以及新的研讨会课程。研究小组将广泛传播研究成果和收集的数据,并利用已开发的技术为选定的团体提供参加实验室开放日的外联机会。
英文摘要
The goal of this project is to develop and evaluate novel methods for telecollaboration - remote collaboration that effectively integrates video and voice communication, computer vision based tracking, and augmented reality display in order to enable participants to more fully leverage the local physical environment in their remote interactions. In this telecollaboration paradigm, remote and local users will interact with the physical environment using models derived from live imagery from a camera that the local user holds or wears, rather than merely passively viewing the video stream. A key aspect of the approach is that it does not require preparation of the environment or model information, so it can be viewed as an "anywhere, anytime" mobile communication technology. Intellectual merit: The proposed research builds on promising preliminary work on telecollaboration showing the effectiveness of world-stabilized "telepointers" - markers controlled by the remote user that stick to the real-world referents in a dynamic environment. The project will advance the state of the art in remote collaboration by providing new capabilities to integrate real and virtual, verbal and spatial, local and remote. The proposed developments are needed in order to make the physical space a more fundamental part of telecollaboration, and significant user studies will be conducted to acquire a better understanding of the opportunities and limitations of physically-grounded remote interaction. Broader impacts: Better, more compelling tools for telecollaboration can have a tremendous impact in terms of productivity and environmental consequences, as improved remote interaction reduces the need for physical collocation and thus travel. The educational impacts of the project include the training and mentoring of graduate students and a new seminar course. The research team will disseminate research results and collected data widely and use the developed technologies to provide outreach opportunities for select groups to participate in lab open houses.
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