In this work an optimized version of the field-mill sensor structure for atmospheric electric field measurements was presented. Both the mechanical structure and the electronic front-end, acquisition and control system are optimized in order to reduce the power consumption and to enhance the instrument metrological performance in term of sensitivity and frequency band. A solar power operated system was realized and tested. The developed system is also equipped with a GPS receiver, allowing data synchronization. This feature enables the implementation of a distributed measurement system for the monitoring of the atmospheric electric field. © 2009 IEEE.
Fort, A., Mugnaini, M., Vignoli, V., Rocchi, S., Perini, F., Monari, J., et al. (2010). Design and modeling of an optimized sensor for atmospheric electric field measurement. In Proceedings of the 2010 IEEE Sensors Applications Symposium (pp.105-109). IEEE [10.1109/SAS.2010.5439402].
Design and modeling of an optimized sensor for atmospheric electric field measurement
Fort, Ada;Mugnaini, Marco;Vignoli, Valerio;Rocchi, Santina;
2010-01-01
Abstract
In this work an optimized version of the field-mill sensor structure for atmospheric electric field measurements was presented. Both the mechanical structure and the electronic front-end, acquisition and control system are optimized in order to reduce the power consumption and to enhance the instrument metrological performance in term of sensitivity and frequency band. A solar power operated system was realized and tested. The developed system is also equipped with a GPS receiver, allowing data synchronization. This feature enables the implementation of a distributed measurement system for the monitoring of the atmospheric electric field. © 2009 IEEE.File | Dimensione | Formato | |
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https://hdl.handle.net/11365/4581
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