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Sensing and Feedback of Everyday Activities to Promote Environmental Behaviors.

机译:促进环境行为的日常活动的感知和反馈。

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摘要

With population increases, global economic growth, and shifts in climate, the world is facing an unprecedented demand for resources that are becomingly increasingly scarce. Although often overlooked, our everyday activities such as commuting to work, showering, and clothes washing can have significant impact on the environment. The central problem addressed in this dissertation is not that humans negatively impact the environment---indeed, some amount of impact is unavoidable---but rather that we have insufficient means to monitor and understand this impact and to help change our behavior if we so desire. This dissertation focuses on creating new types of sensors to monitor and infer everyday human activity such as driving to work or taking a shower and taking this sensed information and feeding it back to the user in novel, engaging, and informative ways with the goal of increasing awareness and promoting environmentally responsible behavior. We refer to these sensing and feedback systems as eco-feedback technology. Our research takes advantage of a number of technology trends including the increasingly low cost of fast computation, advances in machine learning, and the prevalence and affordability of new types of display mediums (e.g., mobile phones) to design systems never before possible.;This dissertation provides a theoretical perspective with which to guide the design of new eco-feedback systems as well as specific formative and technical contributions for eco-feedback in the domains of personal transportation any water usage. Key contributions include the invention of new low-cost sensing systems for monitoring and inferring transit routines and disaggregated water usage in the home along with eco-feedback visualizations that take advantage of this unprecedented data. The approaches, empirical findings and a design space for eco-feedback should be of interest to researchers working on eco-feedback in HCI, Ubicomp and environmental psychology, as well as to practitioners and designers tasked with constructing new types of ecofeedback systems and/or utility bills. More broadly, this dissertation also has implications for the construction of sensing and feedback technology in general, including domains such as persuasive technology, personal informatics, and health behavior change.
机译:随着人口的增加,全球经济的增长以及气候的变化,世界正面临着对资源的前所未有的需求,而这种需求正变得越来越稀缺。虽然经常被忽略,但我们的日常活动(如上下班,洗澡和洗衣服)可能会对环境产生重大影响。本文所要解决的中心问题不是人类对环境的负面影响-实际上,不可避免地会产生一定程度的影响-而是我们没有足够的手段来监视和理解这种影响并在我们改变行为时有所帮助如此渴望。本文致力于创建新型传感器来监视和推断人类的日常活动,例如开车去上班或洗个澡,并以新颖,引人入胜且信息丰富的方式将这些感测到的信息反馈给用户,以增加认识并促进对环境负责的行为。我们将这些传感和反馈系统称为生态反馈技术。我们的研究利用了许多技术趋势,包括快速计算的成本越来越低,机器学习的进步以及新型显示介质(例如移动电话)对于设计系统前所未有的普及性和可承受性。论文提供了理论上的观点,可用来指导新的生态反馈系统的设计以及在任何用水情况下个人运输领域中生态反馈的具体形成和技术贡献。关键的贡献包括发明了新型的低成本传感系统,用于监视和推断公交程序,家庭中的用水分类以及利用此空前数据的生态反馈可视化。 HCI,Ubicomp和环境心理学领域从事生态反馈研究的研究人员,以及负责构建新型生态反馈系统和/或任务的从业人员和设计师,应该对生态反馈的方法,经验发现和设计空间感兴趣。水电费。从更广泛的意义上讲,本论文还对传感和反馈技术的总体构建产生了影响,包括说服技术,个人信息学和健康行为改变等领域。

著录项

  • 作者

    Froehlich, Jon E.;

  • 作者单位

    University of Washington.;

  • 授予单位 University of Washington.;
  • 学科 Sustainability.;Computer Science.;Environmental Sciences.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 381 p.
  • 总页数 381
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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