2003Unpublished venueRequires access

Microwave radiometry for detecting road ice

Giovanni Macelloni, R. Ruisi, P. Pampaloni, S. Paloscia

Open publisher page 8 citations

Abstract

An experimental study aiming at detecting different road conditions by means of millimeter wave radiometry has been conducted in open-air laboratory using a sample of asphalt as target and two dual polarised radiometer at 10 and 37 GHz. It has been found that, when a thin (3 mm) ice crust is formed on the dry iced material, by spraying water, there is an increase of the brightness temperature higher than 15 Kelvin at 37 GHz horizontal polarisation. When, after deicing, the sample becomes wet, the brightness temperature steeply decreases by about 60 Kelvin at both frequencies and polarisations.

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What this paper is about

An experimental study aiming at detecting different road conditions by means of millimeter wave radiometry has been conducted in open-air laboratory using a sample of asphalt as target and two dual polarised radiometer at 10 and 37 GHz. It has been found that, when a thin (3 mm) ice crust is formed on the dry iced material, by spraying water, there is an increase of the brightness temperature higher than 15 Kelvin at 37 GHz horizontal polarisation. When, after deicing, the sample becomes wet, the brightness temperature steeply decreases by about 60 Kelvin at both frequencies and polarisations.

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Available abstract

An experimental study aiming at detecting different road conditions by means of millimeter wave radiometry has been conducted in open-air laboratory using a sample of asphalt as target and two dual polarised radiometer at 10 and 37 GHz. It has been found that, when a thin (3 mm) ice crust is formed on the dry iced material, by spraying water, there is an increase of the brightness temperature higher than 15 Kelvin at 37 GHz horizontal polarisation. When, after deicing, the sample becomes wet, the brightness temperature steeply decreases by about 60 Kelvin at both frequencies and polarisations.

Key concepts: Radiometry, Brightness temperature, Radiometer, Brightness, Millimeter, Remote sensing, Environmental science, Temperature measurement

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