可穿戴环境:重新配置人-机-环境关系

A. B. Kocaballi
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引用次数: 1

摘要

动机——本研究的主要动机是通过可穿戴计算和智能环境技术的综合,更好地理解人、机器和环境关系之间的动态代理。研究方法——本研究采用设计方法进行研究。研究有两个主要阶段,涉及一系列涉及不同配置的设计原型系统的研讨会。原型系统是基于“可穿戴环境”的理念设计的,将可穿戴计算和智能环境方法结合在一起,实现无处不在的计算。从后现象学的角度分析了原型系统与人类参与者之间的相互作用。研究结果/设计——初步的研讨会研究表明,声音和触觉反馈的感知和解释以及受试者的策略高度依赖于所连接的可穿戴设备的位置。研究局限/启示——该研究只涉及低水平的认知行为和塑造机器介导的人类代理的微观感知。原创性/价值——本研究将通过综合可穿戴计算和智能环境领域的方法,阐明服务于可穿戴环境设计的代理复杂现象的一些关键维度和方面。要点:具有动态界面的可穿戴环境可以为调查和重新配置各种形式的人机环境关系提供独特的机会。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Wearable environments: reconfiguring human-machine-environment relations
Motivation -- The main motivation of this research is to gain a better understanding of dynamic agency between human, machine and environment relations mediated by a synthesis of wearable computing and smart environments technologies. Research approach -- The study follows a research through design approach. There are two main stages of the study involving a series of workshops involving designed prototype systems with different configurations. The prototype systems are designed based on the idea of "Wearable Environments" combining wearable computing and smart environments approaches to ubiquitous computing together. The interactions between prototype systems and human participants are analysed from a post-phenomenological perspective. Findings/Design -- The preliminary workshop study showed that the perception and interpretation of sonic and tactile feedbacks and consequently the strategies of subjects were highly dependent on the places of wearable devices attached to. Research limitations/Implications -- The study deals with only low-level cognitive actions and micro-perception shaping the machine-mediated human agency. Originality/Value -- The research will clarify some critical dimensions and aspects of complex phenomenon of agency in service of designing wearable environments by synthesizing the approaches of the fields of wearable computing and smart environments. Take away message -- Wearable environments with enactive interfaces can provide unique opportunities for investigating and reconfiguring various forms of human-machine-environment relations.
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