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Radar echo is much more than what you can expect. Informations carried by the radar signal can be useful for geophysical applications or to understanding atmospheric physical phenomena like turbulence. In the first part some applications of Synthetic Aperure Radar are presented and discussed, in particular focusing on techniques to the monitoring and characterization of quarries for the profit optimization and for the safety and environmental protection of the quarry mining. In the second part the connection between radar signal statistic and turbulence is shown, demonstrating the ability of…mehr

Produktbeschreibung
Radar echo is much more than what you can expect. Informations carried by the radar signal can be useful for geophysical applications or to understanding atmospheric physical phenomena like turbulence. In the first part some applications of Synthetic Aperure Radar are presented and discussed, in particular focusing on techniques to the monitoring and characterization of quarries for the profit optimization and for the safety and environmental protection of the quarry mining. In the second part the connection between radar signal statistic and turbulence is shown, demonstrating the ability of radar to measure the "correlation of the atmosphere" at the micro-scale, and confirming the adequacy of the Gumbel statistic to describe highly correlated complex systems.
Autorenporträt
Andrea Barucci received his degree in Physics in 2006, the PhD in Electronic Engineering Systems in 2011, and in 2015 he received the title of Medical Physicist, always from the University of Florence. At the moment he is a researcher at the ¿Nello Carrarä Institute of Applied Physics that is part of the National Research Council.