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Unearthing the Infrastructure: Humans and Sensors in Field-Based Scientific Research

机译:发掘基础设施:基于现场的科学研究中的人与传感器

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摘要

Distributed sensing systems for studying scientific phenomena are critical applications of information technologies. By embedding computational intelligence in the environment of study, sensing systems allow researchers to study phenomena at spatial and temporal scales that were previously impossible to achieve. We present an ethnographic study of field research practices among researchers in the Center for Embedded Networked Sensing (CENS), a National Science Foundation Science & Technology Center devoted to developing wireless sensing systems for scientific and social applications. Using the concepts of boundary objects and trading zones, we trace the processes of collaborative research around sensor technology development and adoption within CENS. Over the 10-year lifespan of CENS, sensor technologies, sensor data, field research methods, and statistical expertise each emerged as boundary objects that were understood differently by the science and technology partners. We illustrate how sensing technologies were incompatible with field-based environmental research until researchers "unearthed" their infrastructures, explicitly reintroducing human skill and expertise into the data collection process and developing new collaborative languages that emphasized building dynamic sensing systems that addressed human needs. In collaborating around a dynamic sensing model, the sensing systems became embedded not in the environment of study, but in the practices of the scientists.
机译:用于研究科学现象的分布式传感系统是信息技术的关键应用。通过将计算智能嵌入研究环境中,传感系统使研究人员能够研究以前无法实现的时空尺度的现象。我们将对嵌入式网络传感中心(CENS)中的研究人员进行人种志研究,该中心是美国国家科学基金会的科学技术中心,致力于为科学和社会应用开发无线传感系统。利用边界对象和交易区域的概念,我们追踪了围绕CENS内传感器技术开发和采用的合作研究过程。在CENS的10年寿命中,传感器技术,传感器数据,现场研究方法和统计专业知识均作为边界对象出现,科学和技术合作伙伴对它们的理解有所不同。我们将说明传感技术如何与基于现场的环境研究不兼容,直到研究人员“发掘”其基础设施,将人类的技能和专长明确地重新引入数据收集过程中,并开发新的协作语言,以强调构建可满足人类需求的动态传感系统。在围绕动态感测模型进行协作时,感测系统不是嵌入在研究环境中,而是嵌入了科学家的实践中。

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