N: 90 S: -90 E: 180 W: -180
Description
The MCD43A3 Version 6 data product was decommissioned on July 31, 2023. Users are encouraged to use the MCD43A3 Version 6.1 data product.
The Moderate Resolution Imaging Spectroradiometer (MODIS) MCD43A3 Version 6 Albedo Model dataset is produced daily using 16 days of Terra and Aqua MODIS data at 500 meter (m) resolution. Data are temporally weighted to the ninth day of the 16 day which is reflected in the Julian date in the file name.
The MCD43A3 provides black-sky albedo (directional hemispherical reflectance) and white-sky albedo (bihemispherical reflectance) data at local solar noon for MODIS bands 1 through 7 and the visible, near infrared (NIR), and shortwave bands. Along with the albedo layers are the simplified mandatory quality layers for each of the 10 bands. Essential quality information provided in the corresponding MCD43A2 data file should be consulted when using this product.
Users are also urged to use the band specific quality flags to isolate the highest quality full inversion results for their own science applications as described in the User Guide.
Known Issues
- The incorrect representation of the aerosol quantities (low average high) in the C6 MYD09 and MOD09 surface reflectance products may have impacted downstream products particularly over arid bright surfaces. This (and a few other issues) have been corrected for C6.1. Therefore users should avoid substantive use of the C6 MCD43 products and wait for the C6.1 products. In any event, users are always strongly encouraged to download and use the extensive QA data provided in MCD43A2, in addition to the briefer mandatory QAs provided as part of the MCD43A1, 3, and 4 products.
- Corrections were implemented in Collection 6.1 reprocessing.
- For complete information about the MCD43A3 known issues refer to the MODIS Land Quality Assessment website.
Version Description
Product Summary
Citation
Citation is critically important for dataset documentation and discovery. This dataset is openly shared, without restriction, in accordance with the EOSDIS Data Use and Citation Guidance.
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File Naming Convention
The file name begins with the Product Short Name (MCD43A3) followed by the Julian Date of Acquisition formatted as AYYYYDDD (A2002272), the Tile Identifier which is horizontal tile and vertical tile provided as hXXvYY (h23v15), the Version of the data collection (006), the Julian Date and Time of Production designated as YYYYDDDHHMMSS (2016132202442), and the Data Format (hdf).
Documents
USER'S GUIDE
ALGORITHM THEORETICAL BASIS DOCUMENT (ATBD)
PRODUCT QUALITY ASSESSMENT
Publications Citing This Dataset
| Title | Year Sort ascending | Author | Topic |
|---|---|---|---|
| Use of Google Earth Engine to generate a 20-year 1 km x 1 km monthly air temperature product over Yellow River Basin | Gao, Meiling, Li, Zhenhong, Tan, Zhenyu, Li, Huifang, Peng, Jianbing | Land Use/Land Cover Classification, Land Surface Temperature, Emissivity, Vegetation Index, Normalized Difference Vegetation Index (NDVI), Enhanced Vegetation Index (EVI), Albedo, Anisotropy | |
| Uncertainty and sensitivity analysis of a remote-sensing-based penman-monteith model to meteorological and land surface input variables | Majozi, Nobuhle, Mannaerts, Chris, Ramoelo, Abel, Mathieu, Renaud, Verhoef, Wouter | Leaf Area Index (LAI), Fraction Of Absorbed Photosynthetically Active Radiation (fapar), Land Surface Temperature, Emissivity, Albedo, Anisotropy | |
| Trends of the contributions of biophysical (climate) and socioeconomic elements to regional heat islands | Chen, Shengzi, Yu, Zhaowu, Liu, Min, Da, Liangjun, Faiz ul Hassan, Muhammad | Vegetation Index, Normalized Difference Vegetation Index (NDVI), Enhanced Vegetation Index (EVI), Land Use/Land Cover Classification, Land Surface Temperature, Emissivity, Reflectance, Albedo, Anisotropy | |
| The role of declining snow cover in the desiccation of the Great Salt Lake, Utah, using MODIS data | Hall, Dorothy K., O'Leary, Donal S., DiGirolamo, Nicolo E., Miller, Woodruff, Kang, Do Hyuk | Land Surface Temperature, Emissivity, Albedo, Anisotropy | |
| The relationship between land surface temperature and artificial impervious surface fraction in 682 global citiesSpatiotemporal variations and drivers | Yang, Qiquan, Huang, Xin, Yang, Jie, Liu, Yue | Albedo, Anisotropy, Land Surface Temperature, Emissivity, Vegetation Index, Normalized Difference Vegetation Index (NDVI), Enhanced Vegetation Index (EVI) | |
| The role of urban trees in reducing land surface temperatures in European cities | Schwaab, Jonas, Meier, Ronny, Mussetti, Gianluca, Seneviratne, Sonia, Burgi, Christine, Davin, Edouard L. | Albedo, Anisotropy, Evapotranspiration, Latent Heat Flux | |
| The influence of forest fires aerosol and air temperature on glacier albedo, western North America | Williamson, Scott N., Menounos, Brian | Albedo, Anisotropy | |
| Quantifying the contribution of climate change and human activities to biophysical parameters in an arid region | Zhang, Wenqiang, Luo, Geping, Chen, Chunbo, Ochege, Friday U., Hellwich, Olaf, Zheng, Hongwei, Hamdi, Rafiq, Wu, Shixin | Land Surface Temperature, Emissivity, Vegetation Index, Normalized Difference Vegetation Index (NDVI), Enhanced Vegetation Index (EVI), Albedo, Anisotropy | |
| Quantifying the contribution of lucc to surface energy budgetA case study of four typical cities in the yellow river basin in china | Chi, Qian, Zhou, Shenghui, Wang, Lijun, Zhu, Mengyao, Liu, Dandan, Tang, Weichao, Zhao, Xiao, Xu, Siqi, Ye, Siyu, Lee, Jay, Cui, Yaoping | Land Surface Temperature, Emissivity, Evapotranspiration, Latent Heat Flux, Albedo, Anisotropy | |
| Reconstruction of all-weather daytime and nighttime MODIS aqua-terra land surface temperature products using an XGboost approach | Tan, Weiwei, Wei, Chunzhu, Lu, Yang, Xue, Desheng | Vegetation Index, Normalized Difference Vegetation Index (NDVI), Enhanced Vegetation Index (EVI), Land Surface Temperature, Emissivity, Albedo, Anisotropy, Reflectance | |
| Consistent retrieval of multiple parameters from GOES-R top of atmosphere reflectance data | Xiong, Hengbin, Shi, Hanyu, Xiao, Zhiqiang | Albedo, Anisotropy | |
| Combining Multi-Source Data and Machine Learning Approaches to Predict | Wang, Yumiao, Zhang, Zhou, Feng, Luwei, Du, Qingyun, Runge, Troy | Leaf Area Index (LAI), Fraction Of Absorbed Photosynthetically Active Radiation (fapar), Albedo, Anisotropy | |
| Evaluation of a new snow albedo scheme for the Greenland ice sheet in the Regional Atmospheric Climate Model (RACMO2) | van Dalum, Christiaan T., van de Berg, Willem Jan, Lhermitte, Stef, van den Broeke, Michiel R. | Albedo, Anisotropy | |
| Estimating spatio-temporal air temperature in London (UK) using machine learning and earth observation satellite data | dos Santos, Rochelle Schneider | Land Surface Temperature, Emissivity, Albedo, Anisotropy, Terrain Elevation, Digital Elevation/Terrain Model (DEM), Topographical Relief Maps, Vegetation Index, Normalized Difference Vegetation Index (NDVI), Enhanced Vegetation Index (EVI) | |
| Estimation of land surface albedo from MODIS and VIIRS dataA multi-sensor strategy based on the direct estimation algorithm and statistical-based temporal filter | Wang, Mengsi, Fan, Xianlei, Li, Xijia, Liu, Qiang, Qu, Ying | Albedo, Anisotropy | |
| Incorporating dynamic factors for improving a GIS-based solar radiation model | Zhang, Mingxi, Wang, Bin, Liu, De Li, Liu, Jiandong, Zhang, Hong, Feng, Puyu, Kong, Dongdong, Cleverly, James, Yang, Xihua, Yu, Qiang | Albedo, Anisotropy | |
| Development of land surface albedo algorithm for the GK-2A/AMI instrument | Lee, Kyeong-Sang, Chung, Sung-Rae, Lee, Changsuk, Seo, Minji, Choi, Sungwon, Seong, Noh-Hun, Jin, Donghyun, Kang, Minseok, Yeom, Jong-Min, Roujean, Jean-Louis, Jung, Daeseong, Sim, Suyoung, Han, Kyung-Soo | Albedo, Anisotropy, Reflectance | |
| Downscaling satellite retrieved soil moisture using regression tree-based machine learning algorithms over southwest France | Liu, Yangxiaoyue, Xia, Xiaolin, Yao, Ling, Jing, Wenlong, Zhou, Chenghu, Huang, Wumeng, Li, Yong, Yang, Ji | Evapotranspiration, Latent Heat Flux, Albedo, Anisotropy, Vegetation Index, Normalized Difference Vegetation Index (NDVI), Enhanced Vegetation Index (EVI), Land Surface Temperature, Emissivity | |
| Efficient hyper-parameter determination for regularised linear BRDF parameter retrieval | Zobitz, J. M., Quaife, T., Nichols, N. K. | Reflectance, Albedo, Anisotropy | |
| Changes in the surface broadband shortwave radiation budget during the | Wen, Guoyong, Marshak, Alexander, Tsay, Si-Chee, Herman, Jay, Jeong, Ukkyo, Abuhassan, Nader, Swap, Robert, Wu, Dong | Albedo, Anisotropy, Atmospheric Emitted Radiation, Emissivity, Optical Depth/Thickness, Radiative Flux, Reflectance, Transmittance, Clouds, Cloud Condensation Nuclei, Cloud Droplet Concentration/Size, Cloud Liquid Water/Ice, Cloud Optical Depth/Thickness, Cloud Precipitable Water, Cloud Asymmetry, Cloud Ceiling, Cloud Frequency, Cloud Height, Cloud Top Pressure, Cloud Top Temperature, Cloud Vertical Distribution, Cloud Emissivity, Cloud Radiative Forcing, Cloud Reflectance, Cloud Types, Infrared Radiance, REFLECTED INFRARED, Visible Radiance, Cloud Properties, Cloud Fraction, Cloud Top Height | |
| Challenging a Global Land Surface Model in a Local Socio-Environmental System | Dahlin, Kyla M., Akanga, Donald, Lombardozzi, Danica L., Reed, David E., Shirkey, Gabriela, Lei, Cheyenne, Abraha, Michael, Chen, Jiquan | Leaf Area Index (LAI), Fraction Of Absorbed Photosynthetically Active Radiation (fapar), Albedo, Anisotropy | |
| Multi-physics ensemble snow modelling in the western Himalaya | Pritchard, David M. W., Forsythe, Nathan, O'Donnell, Greg, Fowler, Hayley J., Rutter, Nick | Land Surface Temperature, Emissivity, Albedo, Anisotropy | |
| Mid-level clouds over the Sahara in a convection-permitting regional model | Mantsis, Damianos F., Sherwood, Steven, Dixit, Vishal, Morrison, Hugh, Thompson, Greg | Albedo, Anisotropy | |
| Low elevation of Svalbard glaciers drives high mass loss variability | Noel, Brice, Jakobs, C. L., van Pelt, W. J. J., Lhermitte, S., Wouters, B., Kohler, J., Hagen, J. O., Luks, B., Reijmer, C. H., van de Berg, W. J., van den Broeke, M. R. | Albedo, Anisotropy | |
| Aerosol solar radiative forcing near the Taklimakan Desert based on radiative transfer and regional meteorological simulations during the Dust Aerosol ... | Li, Li, Li, Zhengqiang, Chang, Wenyuan, Ou, Yang, Goloub, Philippe, Li, Chengzhe, Li, Kaitao, Hu, Qiaoyun, Wang, Jianping, Wendisch, Manfred | Reflectance, Albedo, Anisotropy, Atmospheric Ozone |