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Assisting human motion-tasks with minimal, real-time feedback.

机译:以最少的实时反馈协助人类的运动任务。

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摘要

Teaching physical motions such as riding, exercising, swimming, etc. to human beings is hard. Coaches face difficulties in communicating their feedback verbally and cannot correct the student mid-action; teaching videos are two dimensional and suffer from perspective distortion. Systems that track a user and provide him real-time feedback have many potential applications: as an aid to the visually challenged, improving rehabilitation, improving exercise routines such as weight training or yoga, teaching new motion tasks, synchronizing motions of multiple actors, etc.;It is not easy to deliver real-time feedback in a way that is easy to interpret, yet unobtrusive enough to not distract the user from the motion task. I have developed motion feedback systems that provide real-time feedback to achieve or improve human motion tasks. These systems track the user's actions with simple sensors, and use tiny vibration motors as feedback devices. Vibration motors provide feedback that is both intuitive and minimally intrusive. My systems' designs are simple, flexible, and extensible to large-scale, full-body motion tasks.;The systems that I developed as part of this thesis address two classes of motion tasks: configuration tasks and trajectory tasks. Configuration tasks guide the user to a target configuration. My systems for configuration tasks use a motion-capture system to track the user. Configuration-task systems restrict the user's motions to a set of motion primitives, and guide the user to the target configuration by executing a sequence of motion-primitives. Trajectory tasks assume that the user understands the motion task. The systems for trajectory tasks provide corrective feedback that assists the user in improving their performance. This thesis presents the design, implementation, and results of user experiments with the prototype systems I have developed.
机译:向人类教授诸如骑行,锻炼,游泳等身体运动是很困难的。教练在口头交流反馈意见时遇到困难,无法纠正学生的中间动作;教学视频是二维的,并且会出现透视失真。跟踪用户并向其提供实时反馈的系统具有许多潜在的应用:作为视力障碍者的帮助,改善康复,改善诸如举重训练或瑜伽之类的锻炼程序,教授新的运动任务,同步多个演员的运动等。;以易于解释的方式提供实时反馈并不容易,但又不至于引起干扰,不会分散用户的运动任务。我已经开发了运动反馈系统,该系统可提供实时反馈以实现或改善人体运动任务。这些系统使用简单的传感器跟踪用户的动作,并使用微小的振动电机作为反馈设备。振动电机提供的反馈既直观又干扰最小。我的系统设计简单,灵活,并且可以扩展到大规模的全身运动任务。;作为本文的一部分,我开发的系统解决了两类运动任务:配置任务和轨迹任务。配置任务指导用户进行目标配置。我的配置任务系统使用运动捕捉系统来跟踪用户。配置任务系统将用户的运动限制为一组运动原语,并通过执行一系列运动原语将用户引导至目标配置。轨迹任务假定用户了解运动任务。用于轨迹任务的系统提供纠正性反馈,可帮助用户改善其性能。本文介绍了我开发的原型系统的设计,实现和用户实验的结果。

著录项

  • 作者

    Kavathekar, Paritosh A.;

  • 作者单位

    Dartmouth College.;

  • 授予单位 Dartmouth College.;
  • 学科 Engineering Computer.;Computer Science.;Engineering Robotics.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 140 p.
  • 总页数 140
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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