Ozone concentrations in ambient air collected using low-cost sensor technologies, in the framework of EU project CAPTOR. Data collected during summer 2018 in NE Spain and N Italy. Sensors are metal-oxide. Data are calibrated using multiple linear regression, and validated against official reference data from each local air quality monitoring network. More details on the calibration and data validation may be found in A. Ripoll et al. / Science of the Total Environment 651 (2019) 1166–1179
Abstract The performances of several field calibration methods for low-cost sensors, including linea...
Air quality monitoring is traditionally performed using fixed monitoring stations in controlled envi...
© 2019 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for a...
Ozone concentrations in ambient air collected using low-cost sensor technologies, in the framework o...
Ozone concentrations in ambient air collected using low-cost sensor technologies, in the framework o...
Ozone concentrations in ambient air collected using low-cost sensor technologies, in the framework o...
Ozone concentrations in ambient air collected using low-cost sensor technologies, in the framework o...
The H2020 CAPTOR project deployed three testbeds in Spain, Italy and Austria with low-cost sensors f...
Good air quality is essential for both human beings and the environment in general. The three most h...
Tropospheric ozone (O3) is an environmental pollutant of growing concern, especially in suburban and...
International audienceThis work describes the technical features and the performance of two differen...
The performances of several field calibration methods for low-cost sensors, including linear/multi l...
Data used in paper "A comparative study of calibration methods for low-cost ozone sensors in IoT pla...
The H2020 CAPTOR project deployed three testbeds in Spain, Italy and Austria with low-cost sensors f...
AbstractThe performances of several field calibration methods for low-cost sensors, including linear...
Abstract The performances of several field calibration methods for low-cost sensors, including linea...
Air quality monitoring is traditionally performed using fixed monitoring stations in controlled envi...
© 2019 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for a...
Ozone concentrations in ambient air collected using low-cost sensor technologies, in the framework o...
Ozone concentrations in ambient air collected using low-cost sensor technologies, in the framework o...
Ozone concentrations in ambient air collected using low-cost sensor technologies, in the framework o...
Ozone concentrations in ambient air collected using low-cost sensor technologies, in the framework o...
The H2020 CAPTOR project deployed three testbeds in Spain, Italy and Austria with low-cost sensors f...
Good air quality is essential for both human beings and the environment in general. The three most h...
Tropospheric ozone (O3) is an environmental pollutant of growing concern, especially in suburban and...
International audienceThis work describes the technical features and the performance of two differen...
The performances of several field calibration methods for low-cost sensors, including linear/multi l...
Data used in paper "A comparative study of calibration methods for low-cost ozone sensors in IoT pla...
The H2020 CAPTOR project deployed three testbeds in Spain, Italy and Austria with low-cost sensors f...
AbstractThe performances of several field calibration methods for low-cost sensors, including linear...
Abstract The performances of several field calibration methods for low-cost sensors, including linea...
Air quality monitoring is traditionally performed using fixed monitoring stations in controlled envi...
© 2019 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for a...