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Among the in-situ and remote sensing instruments, millimeter-wave radars are becoming much prevalent in remote fog detection attributed to their advantages in high spatial resolution and sensitivity. A 35 GHz cloud radar at the Cabauw Experimental Site for Atmospheric Research (CESAR) in the western part of the Netherlands has been used in “fog mode” for the first time. In the meantime, visibility...
Fog is a significant factor affecting the public traffic because visibility is reduced to a large extent. Therefore the determination of optical visibility in fog from radar instruments has received much interest. To observe fog with radar, high frequency bands (millimeter waves) have the best option. A 35 GHz cloud radar at the Cabauw Experimental Site for Atmospheric Research in the Netherlands...
Fog is a significant factor affecting the public traffic because visibility is reduced to a large extent. Therefore the determination of optical visibility in fog from radar instruments has received much interest. To observe fog with radar, high frequency bands (millimeter waves) have the best option. A 35 GHz cloud radar at the Cabauw Experimental Site for Atmospheric Research in the Netherlands...
Millimeter-wave radars are becoming prevalent in fog detection because their advantages over the other in situ and remote sensing instruments. The evaluation of a millimeter-wave radar's performance as a weather remote sensing tool must rely on assessment of the physical conditions governing scattering and absorption of millimeter waves which are determined by the wavelength, ambient temperature and...
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