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Empowering end users to customize their smart environments: Model, composition paradigms, and domain-specific tools

机译:使最终用户能够自定义其智能环境:模型,组合范例和特定领域的工具

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摘要

Research on the Internet of Things (IoT) has devoted many efforts to technological aspects. Little social and practical benefits have emerged so far. IoT devices, so-called smart objects, are becoming even more pervasive and social, leading to the need to provide non-technical users with innovative interaction strategies for controlling their behavior. In other words, the opportunities offered by IoT can be amplified if new approaches are conceived to enable non-technical users to be directly involved in "composing" their smart objects by synchronizing their behavior. To fulfill this goal, this article introduces a model that includes new operators for defining rules combining multiple events and conditions exposed by smart objects, and for defining temporal and spatial constraints on rule activation. The article also presents the results of an elicitation study that was conducted to identify possible visual paradigms for expressing composition rules. Prototypes implementing the resulting visual paradigms were compared during a controlled experiment and the one that resulted most relevant for our goals was used in a study that involved home-automation experts. Finally, the article discusses some design implications that came out from the performed studies and presents the architecture of a platform supporting rule definition and execution.
机译:物联网(IoT)的研究已在技术方面投入了很多精力。迄今为止,几乎没有任何社会和实践效益。物联网设备(所谓的智能对象)正变得越来越普遍和社会化,导致需要为非技术用户提供创新的交互策略来控制其行为。换句话说,如果构想出新方法以使非技术用户能够通过同步他们的行为而直接参与“组成”他们的智能对象,那么物联网提供的机会就可以被放大。为了实现此目标,本文引入了一个模型,其中包括新的运算符,用于定义结合了智能对象暴露的多个事件和条件的规则,并定义规则激活的时间和空间约束。本文还介绍了启发研究的结果,该研究旨在识别表达构图规则的可能视觉范式。在一项受控实验中,对实现最终视觉范式的原型进行了比较,并在一项涉及家庭自动化专家的研究中使用了与我们的目标最相关的原型。最后,本文讨论了从执行的研究中得出的一些设计含义,并提出了支持规则定义和执行的平台的体系结构。

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