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Contextual Sensing: Integrating Contextual Information with Human and Technical Geo-Sensor Information for Smart Cities

机译:情境感知:将情境信息与人和技术地理传感器信息集成到智能城市中

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摘要

In this article we critically discuss the challenge of integrating contextual information, in particular spatiotemporal contextual information, with human and technical sensor information, which we approach from a geospatial perspective. We start by highlighting the significance of context in general and spatiotemporal context in particular and introduce a smart city model of interactions between humans, the environment, and technology, with context at the common interface. We then focus on both the intentional and the unintentional sensing capabilities of today’s technologies and discuss current technological trends that we consider have the ability to enrich human and technical geo-sensor information with contextual detail. The different types of sensors used to collect contextual information are analyzed and sorted into three groups on the basis of names considering frequently used related terms, and characteristic contextual parameters. These three groups, namely technical in situ sensors, technical remote sensors, and human sensors are analyzed and linked to three dimensions involved in sensing (data generation, geographic phenomena, and type of sensing). In contrast to other scientific publications, we found a large number of technologies and applications using in situ and mobile technical sensors within the context of smart cities, and surprisingly limited use of remote sensing approaches. In this article we further provide a critical discussion of possible impacts and influences of both technical and human sensing approaches on society, pointing out that a larger number of sensors, increased fusion of information, and the use of standardized data formats and interfaces will not necessarily result in any improvement in the quality of life of the citizens of a smart city. This article seeks to improve our understanding of technical and human geo-sensing capabilities, and to demonstrate that the use of such sensors can facilitate the integration of different types of contextual information, thus providing an additional, namely the geo-spatial perspective on the future development of smart cities.
机译:在本文中,我们严格地讨论了将上下文信息(尤其是时空上下文信息)与人类和技术传感器信息相集成的挑战,这是我们从地理空间的角度出发。我们首先强调上下文在一般情况下以及时空上下文中的重要性,并介绍一个在人类,环境和技术之间相互作用的智能城市模型,并在公共界面处使用上下文。然后,我们将重点关注当今技术的有意和无意传感能力,并讨论我们认为能够利用上下文详细信息丰富人类和技术地理传感器信息的当前技术趋势。考虑到经常使用的相关术语和特征性上下文参数,根据用于收集上下文信息的不同类型的传感器进行分析并将其分为三类。对这三类,即技术性原位传感器,技术性远程传感器和人体传感器进行了分析,并将它们与传感所涉及的三个维度(数据生成,地理现象和传感类型)相关联。与其他科学出版物相反,我们发现了在智慧城市环境中使用现场和移动技术传感​​器的大量技术和应用,以及令人惊讶地限制了遥感方法的使用。在本文中,我们将对技术和人类感知方法对社会的可能影响和影响进行批判性讨论,并指出不一定会有更多的传感器,更多的信息融合以及使用标准化的数据格式和接口导致智慧城市居民生活质量的任何改善。本文旨在增进我们对技术和人类地理传感能力的理解,并证明使用此类传感器可以促进各种类型的上下文信息的集成,从而提供了一种额外的方法,即对未来的地理空间观点发展智慧城市。

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