A nonparametric online model for air quality prediction

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Abstract

We introduce a novel method for the continuous online prediction of particulate matter in the air (more specifically, PM10 and PM2.5) given sparse sensor information. A nonparametric model is developed using Gaussian Processes, which eschews the need for an explicit formulation of internal - and usually very complex - dependencies between meteorological variables. Instead, it uses historical data to extrapolate pollutant values both spatially (in areas with no sensor information) and temporally (the near future). Each prediction also contains a respective variance, indicating its uncertainty level and thus allowing a probabilistic treatment of results. A novel training methodology (Structural Cross-Validation) is presented, which preserves the spatio-temporal structure of available data during the hyperpa-rameter optimization process. Tests were conducted using a real-time feed from a sensor network in an area of roughly 50 x 80 km, alongside comparisons with other techniques for air pollution prediction. The promising results motivated the development of a smartphone applicative and a website, currently in use to increase the efficiency of air quality monitoring and control in the area.

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APA

Guizilini, V., & Ramos, F. (2015). A nonparametric online model for air quality prediction. In Proceedings of the National Conference on Artificial Intelligence (Vol. 1, pp. 651–657). AI Access Foundation. https://doi.org/10.1609/aaai.v29i1.9246

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