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Multi-Type Sensor Placements in Gaussian Spatial Fields for Environmental Monitoring

机译:高斯空间场中用于环境监测的多种类型的传感器放置

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摘要

As citizens are increasingly concerned about the surrounding environment, it is important for modern cities to provide sufficient and accurate environmental information to the public for decision making in the era of smart cities. Due to the limited budget, we often need to optimize the sensor placement in order to maximize the overall information gain according to certain criteria. Existing work is primarily concerned with single-type sensor placement; however, the environment usually requires accurate measurements of multiple types of environmental characteristics. In this paper, we focus on the optimal multi-type sensor placement in Gaussian spatial field for environmental monitoring. We study two representative cases: the one-with-all case when each station is equipped with all types of sensors and the general case when each station is equipped with at least one type of sensor. We propose two greedy algorithms accordingly, each with a provable approximation guarantee. We evaluated the proposed approach via an application in air quality monitoring scenario in Hong Kong and experimental results demonstrate the effectiveness of the proposed approach.
机译:随着市民对周围环境的日益关注,对于现代城市来说,向公众提供足够准确的环境信息以进行智慧城市时代的决策至关重要。由于预算有限,我们经常需要优化传感器的位置,以便根据某些标准最大化总体信息增益。现有的工作主要与单一类型传感器的放置有关。但是,环境通常需要精确测量多种类型的环境特征。在本文中,我们专注于在高斯空间场中进行环境监测的最佳多类型传感器放置。我们研究了两种代表性的情况:每个站点都配备了所有类型的传感器的“一事俱全”情况,以及每个站点至少配备了一种类型的传感器的一般情况。我们相应地提出了两种贪婪算法,每种算法都有可证明的近似保证。我们通过在香港空气质量监测中的应用评估了该方法的有效性,实验结果证明了该方法的有效性。

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