Melt ponds on sea ice strongly reduce the surface albedo and accelerate the decay of Arctic sea ice. Due to different spectral properties of snow, ice, and water, the fractional coverage of these distinct surface types can be derived from multispectral sensors like the Moderate Resolution Image Spectroradiometer (MODIS) using a spectral unmixing algorithm. The unmixing was implemented using a multilayer perceptron to reduce computational costs. <br><br> Arctic-wide melt pond fractions and sea ice concentrations are derived from the level 3 MODIS surface reflectance product. The validation of the MODIS melt pond data set was conducted with aerial photos from the MELTEX campaign 2008 in the Beaufort Sea, data sets from the Nationa...
This dataset includes melt pond fraction (MPF) over Arctic sea ice during 2000-2019. The spatial cov...
The presence of melt ponds on the Arctic sea ice strongly affects the energy balance of the Arctic O...
Sea-ice concentrations derived from satellite microwave brightness temperatures are less accurate d...
Melt ponds on sea ice strongly reduce the surface albedo and accelerate the decay of Arctic sea ice....
Melt ponds on sea ice strongly reduce the surface albedo and accelerate the decay of Arctic sea ice....
Abstract. Melt ponds on sea ice strongly reduce the surface albedo and accelerate the decay of Arcti...
Melt ponds are influencing the Arctic energy budget as they strongly reduce the surface albedo of se...
Reflectances measured in the visible frequency range at three channels of the Moderate Resolution Im...
Melt ponds are regularly observed on the surface of Arctic sea ice in late spring and summer. They s...
Melt ponds are regularly observed on the surface of Arctic sea ice in late spring and summer. They s...
Melt pond coverage on sea ice is an important influence on sea ice albedo reduction during the summe...
The presence of melt ponds on the Arctic sea ice strongly affects the energy balance of the Arctic O...
Sea-ice concentrations derived from satellite microwave brightness temperatures are less accurate du...
Sea-ice concentrations derived from satellite microwave brightness temperatures are less accurate du...
The spatial and temporal dynamics of melt ponds and sea ice albedo contain information on the curren...
This dataset includes melt pond fraction (MPF) over Arctic sea ice during 2000-2019. The spatial cov...
The presence of melt ponds on the Arctic sea ice strongly affects the energy balance of the Arctic O...
Sea-ice concentrations derived from satellite microwave brightness temperatures are less accurate d...
Melt ponds on sea ice strongly reduce the surface albedo and accelerate the decay of Arctic sea ice....
Melt ponds on sea ice strongly reduce the surface albedo and accelerate the decay of Arctic sea ice....
Abstract. Melt ponds on sea ice strongly reduce the surface albedo and accelerate the decay of Arcti...
Melt ponds are influencing the Arctic energy budget as they strongly reduce the surface albedo of se...
Reflectances measured in the visible frequency range at three channels of the Moderate Resolution Im...
Melt ponds are regularly observed on the surface of Arctic sea ice in late spring and summer. They s...
Melt ponds are regularly observed on the surface of Arctic sea ice in late spring and summer. They s...
Melt pond coverage on sea ice is an important influence on sea ice albedo reduction during the summe...
The presence of melt ponds on the Arctic sea ice strongly affects the energy balance of the Arctic O...
Sea-ice concentrations derived from satellite microwave brightness temperatures are less accurate du...
Sea-ice concentrations derived from satellite microwave brightness temperatures are less accurate du...
The spatial and temporal dynamics of melt ponds and sea ice albedo contain information on the curren...
This dataset includes melt pond fraction (MPF) over Arctic sea ice during 2000-2019. The spatial cov...
The presence of melt ponds on the Arctic sea ice strongly affects the energy balance of the Arctic O...
Sea-ice concentrations derived from satellite microwave brightness temperatures are less accurate d...