首页> 外文学位 >Charlie: A new robot prototype for improving communication and social skills in children with autism and a new single-point infrared sensor technique for detecting breathing and heart rate remotely.
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Charlie: A new robot prototype for improving communication and social skills in children with autism and a new single-point infrared sensor technique for detecting breathing and heart rate remotely.

机译:查理(Charlie):一种新的机器人原型,用于改善自闭症儿童的沟通和社交技能,以及一种新的单点红外传感器技术,可远程检测呼吸和心率。

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摘要

This research delivers a new, interactive game-playing robot named CHARLIE and a novel technique for remotely detecting breathing and heart rate using a single-point, thermal infrared sensor (IR). The robot is equipped with a head and two arms, each with two degrees of freedom, and a camera. We trained a human hands classifier and used this classifier along with a standard face classifier to create two autonomous interactive games: single-player ("Imitate Me, Imitate You") and two-player ("Pass the Pose"). Further, we developed and implemented a suite of new interactive games in which the robot is teleoperated by remote control. Each of these features has been tested and validated through a field study including eight children diagnosed with autism and speech delays. Results from that study show that significant improvements in speech and social skills can be obtained when using CHARLIE with the methodology described herein. Moreover, gains in communication and social interaction are observed to generalize from child-to-robot to co-present others through the scaffolding of communication skills with the systematic approach developed for the study. Additionally, we present a new IR system that continuously targets the sub-nasal region of the face and measures subtle temperature changes corresponding to breathing and cardiac pulse. This research makes four novel contributions: (1) A low-cost, field-tested robot for use in autism therapy, (2) a suite of interactive robot games, (3) a hand classifier created for performing hand detection during the interactive games, and (4) an IR sensor system which remotely collects temperatures and computes breathing and heart rate. Interactive robot CHARLIE is physically designed to be aesthetically appealing to young children between three and six years of age. The hard, wood and metal robot body is covered with a bright green, fuzzy material and additional padding so that it appears toylike and soft. Additionally, several structural features were included to ensure safety during interactive play and to enhance the robustness of the robot. Because children with autism spectrum disorder (ASD) often enjoy exploring new or interesting objects with their hands, the robot must be able to withstand a moderate amount of physical manipulation without causing injury to the child or damaging the robot or its components. CHARLIE plays five distinct interactive games that are designed to be entertaining to young children, appeal to children of varying developmental ability and promote increased speech and social skill through imitation and turn-taking. Remote breathing and heart rate detection Stress is a compounding factor in autism therapy which can inhibit progress toward specific therapeutic goals. The ability to non-invasively detect physical indicators of increasing stress, especially when they can be correlated to specific activities and measured in terms of length and frequency, can relay important metrics about the antecedents that cause stress for a particular child and can be used to help automate the evaluation of a child's progress between sessions. Further, collecting and measuring critical physiological indicators such as breathing and heart rate can enable robots to adjust their behavior based on the perceived emotional, psychological or physical state of their user. The utility and acceptance of robots can be further increased when they are able to learn typical physiological patterns and use these patterns as a baseline for identifying anomalies or possible warning signs of various problems in their human users. We present a new technique for remotely collecting and analyzing breathing and heart rates in real time using an autonomous, low cost infrared (IR) sensor system. This is accomplished by continuously targeting a high precision IR sensor, tracking changes in the sub-nasal skin surface temperature and employing a sinusoidal curve-fitting function, Fast Fourier Transform (FFT), and Discrete Wavelet Transform (DWT) to extract the breathing and heart rate from recorded temperatures.
机译:这项研究提供了一种名为CHARLIE的新型交互式游戏机器人,以及一种使用单点热红外传感器(IR)远程检测呼吸和心率的新颖技术。该机器人配有一个头部和两个手臂(每个都有两个自由度)和一个摄像头。我们训练了人类手分类器,并使用该分类器和标准的面部分类器来创建两个自主的交互式游戏:单人游戏(“模仿我,模仿你”)和两人游戏(“传递姿势”)。此外,我们开发并实施了一套新的互动游戏,其中机器人可以通过遥控进行遥控操作。这些功能中的每一个都已通过包括8名被诊断患有自闭症和言语障碍的儿童的现场研究进行了测试和验证。该研究的结果表明,将CHARLIE与本文所述的方法结合使用时,可以获得语音和社交技能的显着改善。此外,观察到交流和社交互动方面的收益普遍存在,从儿童到机器人,再通过为研究开发的系统方法,通过交流技巧的支持,共同呈现给他人。此外,我们提出了一种新的红外系统,该系统连续瞄准面部的鼻下区域,并测量与呼吸和心脏搏动相对应的细微温度变化。这项研究做出了四项新颖的贡献:(1)一种用于自闭症治疗的低成本,经过现场测试的机器人;(2)一套交互式机器人游戏;(3)为在交互式游戏中进行手部检测而创建的手分类器(4)可以远程收集温度并计算呼吸和心率的红外传感器系统。交互式机器人CHARLIE的设计在美学上吸引了三到六岁的幼儿。坚硬的木质和金属机器人主体被鲜绿色,模糊的材料和额外的填充物覆盖,因此看起来像玩具一样柔软。此外,还包括一些结构特征,以确保交互式游戏期间的安全性并增强机器人的坚固性。由于患有自闭症谱系障碍(ASD)的儿童经常喜欢用双手探索新的或有趣的物体,因此机器人必须能够承受适度的物理操作,而不会对儿童造成伤害或损坏机器人或其组件。查理(Charlie)玩着五种独特的互动游戏,旨在让幼儿娱乐,吸引具有不同发育能力的儿童,并通过模仿和转弯来提高演讲和社交技巧。远程呼吸和心率检测压力是自闭症治疗的一个复合因素,可以抑制实现特定治疗目标的进展。非侵入式检测压力增加的物理指标的能力,尤其是当它们可以与特定活动相关并根据长度和频率进行测量时,可以传递有关导致特定儿童压力的前因的重要指标,并且可以用来有助于在两节课之间自动评估孩子的进度。此外,收集和测量诸如呼吸和心率之类的关键生理指标可以使机器人根据用户的情绪,心理或身体状况来调整其行为。当机器人能够学习典型的生理模式并将这些模式用作识别人类用户中各种问题的异常或可能的警告信号的基准时,它们的实用性和接受度会进一步提高。我们提出了一种新技术,可使用自主的低成本红外(IR)传感器系统实时远程采集和分析呼吸和心率。这是通过连续对准高精度红外传感器,跟踪鼻下皮肤表面温度的变化并采用正弦曲线拟合功能,快速傅立叶变换(FFT)和离散小波变换(DWT)来提取呼吸频率并实现的。根据记录的温度测得的心率。

著录项

  • 作者

    Boccanfuso, Laura.;

  • 作者单位

    University of South Carolina.;

  • 授予单位 University of South Carolina.;
  • 学科 Computer Science.;Engineering Robotics.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 169 p.
  • 总页数 169
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:41:45

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