N: 90 S: -90 E: 180 W: -180
Description
The MOD13A2 Version 6.1 product provides Vegetation Index (VI) values at a per pixel basis at 1 kilometer (km) spatial resolution. There are two primary vegetation layers. The first is the Normalized Difference Vegetation Index (NDVI), which is referred to as the continuity index to the existing National Oceanic and Atmospheric Administration-Advanced Very High Resolution Radiometer (NOAA-AVHRR) derived NDVI. The second vegetation layer is the Enhanced Vegetation Index (EVI), which has improved sensitivity over high biomass regions. The algorithm for this product chooses the best available pixel value from all the acquisitions from the 16 day period. The criteria used is low clouds, low view angle and the highest NDVI/EVI value.
Provided along with the vegetation layers and the two quality assurance (QA) layers are reflectance bands 1 (red), 2 (near-infrared), 3 (blue), and 7 (mid-infrared), as well as four observation layers.
Known Issues
- For complete information about known issues please refer to the MODIS/VIIRS 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 (MOD13A2) followed by the Julian Date of Acquisition formatted as AYYYYDDD (A2025193), the Tile Identifier which is horizontal tile and vertical tile provided as hXXvYY (h27v12), the Version of the data collection (061), the Julian Date and Time of Production designated as YYYYDDDHHMMSS (2025209132944), and the Data Format (hdf).
Documents
USER'S GUIDE
ALGORITHM THEORETICAL BASIS DOCUMENT (ATBD)
PRODUCT QUALITY ASSESSMENT
SCIENCE DATA PRODUCT VALIDATION
Publications Citing This Dataset
| Title | Year Sort ascending | Author | Topic |
|---|---|---|---|
| Spatiotemporal analysis of crop water requirements in Lower Chenab Canal (LCC) Irrigation System for the better management of water resources | Usman, Muhammad, Hussain, Ejaz, Rabbani, Umair, Ghazi, Shahid, Irteza, Syed M., Gull, Shamaila | Vegetation Index, Normalized Difference Vegetation Index (NDVI), Enhanced Vegetation Index (EVI), Land Surface Temperature, Emissivity | |
| Spatiotemporal patterns of land surface temperature change in the Tibetan Plateau based on MODIS/Terra daily product from 2000 to 2018 | Yang, Mengjiao, Zhao, Wei, Zhan, Qiqi, Xiong, Donghong | Land Use/Land Cover Classification, Land Surface Temperature, Emissivity, Vegetation Index, Normalized Difference Vegetation Index (NDVI), Enhanced Vegetation Index (EVI), Total Surface Precipitation Rate | |
| Spatiotemporal characteristics of drought and its impact on vegetation in the vegetation region of Northwest China | Cao, Shengpeng, He, Yi, Zhang, Lifeng, Chen, Yi, Yang, Wang, Yao, Sheng, Sun, Qiang | Vegetation Index, Normalized Difference Vegetation Index (NDVI), Enhanced Vegetation Index (EVI) | |
| Spatial downscaling of IMERG considering vegetation index based on adaptive lag phase | Zeng, Zhaozhao, Chen, Haonan, Shi, Qian, Li, Jun | Land Use/Land Cover Classification, Vegetation Index, Normalized Difference Vegetation Index (NDVI), Enhanced Vegetation Index (EVI), Precipitation, Precipitation Amount, Precipitation Rate, Snow, Rain, Total Surface Precipitation Rate | |
| Spatial and temporal monitoring of drought conditions using the satellite rainfall estimates and remote sensing optical and thermal measurements | Mohseni, Farzane, Kiani Sadr, Maryam, Eslamian, Saeid, Areffian, Atta, Khoshfetrat, Ali | Land Surface Temperature, Emissivity, Vegetation Index, Normalized Difference Vegetation Index (NDVI), Enhanced Vegetation Index (EVI) | |
| Soil moisture seasonality alters vegetation response to drought in the Mongolian Plateau | Lu, Zihan, Peng, Shushi, Slette, Ingrid, Cheng, Guoquan, Li, Xiran, Chen, Anping | Land Use/Land Cover Classification, Vegetation Index, Normalized Difference Vegetation Index (NDVI), Enhanced Vegetation Index (EVI), Plant Phenology | |
| Relative contributions of natural and man-made factors to vegetation cover change of environmentally sensitive and vulnerable areas of China | Li, Yang, Zheng, Zhicheng, Qin, Yaochen, Rong, Peijun | Terrain Elevation, Digital Elevation/Terrain Model (DEM), Topographical Relief Maps, Vegetation Index, Normalized Difference Vegetation Index (NDVI), Enhanced Vegetation Index (EVI) | |
| Seamless downscaling of the ESA CCI soil moisture data at the daily scale with MODIS land products | Zhao, Wei, Wen, Fengping, Wang, Qunming, Sanchez, Nilda, Piles, Maria | Land Surface Temperature, Emissivity, Vegetation Index, Normalized Difference Vegetation Index (NDVI), Enhanced Vegetation Index (EVI) | |
| Remote sensing-based actual evapotranspiration assessment in a data-scarce area of Brazil: A case study of the Urucuia Aquifer System | de Andrade, Bruno Cesar Comini, de Andrade Pinto, Eber Jose, Ruhoff, Anderson, Senay, Gabriel B. | Land Use/Land Cover Classification, Land Surface Temperature, Emissivity, Vegetation Index, Normalized Difference Vegetation Index (NDVI), Enhanced Vegetation Index (EVI) | |
| Remote sensing-based biological and nonbiological indices for evaluating | Jafari, Reza, Abedi, Maedeh | Land Surface Temperature, Emissivity, Vegetation Index, Normalized Difference Vegetation Index (NDVI), Enhanced Vegetation Index (EVI) | |
| 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 | |
| Reconstruction of the daily MODIS land surface temperature product using the two-step improved similar pixels method | Tan, Junlei, Che, Tao, Wang, Jian, Liang, Ji, Zhang, Yang, Ren, Zhiguo | Land Surface Temperature, Emissivity, Vegetation Index, Normalized Difference Vegetation Index (NDVI), Enhanced Vegetation Index (EVI) | |
| Regional evaluation of satellite-based methods for identifying leaf unfolding date | Shen, Ruoque, Chen, Xiuzhi, Chen, Lei, He, Bin, Yuan, Wenping | Land Use/Land Cover Classification, Vegetation Index, Normalized Difference Vegetation Index (NDVI), Enhanced Vegetation Index (EVI), Plant Phenology | |
| Satellite-derived estimation of grassland aboveground biomass in the three-river headwaters region of China during 19822018 | Yu, Ruiyang, Yao, Yunjun, Wang, Qiao, Wan, Huawei, Xie, Zijing, Tang, Wenjia, Zhang, Ziping, Yang, Junming, Shang, Ke, Guo, Xiaozheng, Bei, Xiangyi | Vegetation Index, Normalized Difference Vegetation Index (NDVI), Enhanced Vegetation Index (EVI) | |
| 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 | |
| Variation in vegetation and its driving force in the middle reaches of the Yangtze River in China | Yi, Yang, Wang, Bin, Shi, Mingchang, Meng, Zekun, Zhang, Chen | Vegetation Index, Normalized Difference Vegetation Index (NDVI), Enhanced Vegetation Index (EVI) | |
| 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) | |
| Using remote sensing to identify the peak of the growing season at globally-distributed flux sites: A comparison of models, sensors, and biomes | Ge, Zhongxi, Huang, Jing, Wang, Xufeng, Zhao, Yinjun, Tang, Xuguang, Zhou, Yun, Lai, Peiyu, Hao, Binfei, Ma, Mingguo | Vegetation Index, Normalized Difference Vegetation Index (NDVI), Enhanced Vegetation Index (EVI) | |
| Vegetation change and its response to climate extremes in the arid region of northwest china | Wang, Simeng, Liu, Qihang, Huang, Chang | Land Use/Land Cover Classification, Vegetation Index, Normalized Difference Vegetation Index (NDVI), Enhanced Vegetation Index (EVI) | |
| Vegetation greening in more than 94% of the Yellow River Basin (YRB) region in China during the 21st century caused jointly by warming and anthropogenic activities | Tian, Feng, Liu, Lei-Zhen, Yang, Jian-Hua, Wu, Jian-Jun | Land Use/Land Cover Classification, Terrain Elevation, Digital Elevation/Terrain Model (DEM), Topographical Relief Maps, Vegetation Index, Normalized Difference Vegetation Index (NDVI), Enhanced Vegetation Index (EVI) | |
| Urban greenness and survival in lung cancer patients: A registry-based | Yang, Lei, Guo, Fuyu, Wang, Ning, Liu, Shuo, Zhang, Xi, Li, Huichao, Li, Qingyu, Xue, Tao, Xiao, Qingyang, Li, Xin, Liu, Hengyi, Tong, Mingkun, Li, Pengfei, Ren, Aiguo, Ji, Jiafu | Vegetation Index, Normalized Difference Vegetation Index (NDVI), Enhanced Vegetation Index (EVI) | |
| Yield forecasting with machine learning and small dataWhat gains for grains? | Meroni, Michele, Waldner, Francois, Seguini, Lorenzo, Kerdiles, Herve, Rembold, Felix | Vegetation Index, Normalized Difference Vegetation Index (NDVI), Enhanced Vegetation Index (EVI) | |
| Gap-free LST generation for MODIS/Terra LST product using a random forest-based reconstruction method | Xiao, Yao, Zhao, Wei, Ma, Mingguo, He, Kunlong | Reflectance, Land Surface Temperature, Emissivity, Vegetation Index, Normalized Difference Vegetation Index (NDVI), Enhanced Vegetation Index (EVI) | |
| Generating 1 km spatially seamless and temporally continuous air temperature based on deep learning over Yangtze River Basin, China | Li, Rui, Huang, Tailai, Song, Yu, Huang, Shuzhe, Zhang, Xiang | Land Surface Temperature, Emissivity, Vegetation Index, Normalized Difference Vegetation Index (NDVI), Enhanced Vegetation Index (EVI) | |
| Generation of spatio-temporally continuous evapotranspiration and its components by coupling a two-source energy balance model and a deep neural network over the Heihe River Basin | Cui, Yaokui, Song, Lisheng, Fan, Wenjie | Land Use/Land Cover Classification, Land Surface Temperature, Emissivity, Vegetation Index, Normalized Difference Vegetation Index (NDVI), Enhanced Vegetation Index (EVI), Leaf Characteristics, Photosynthetically Active Radiation, Leaf Area Index (LAI), Fraction Of Absorbed Photosynthetically Active Radiation (fapar), Albedo, Anisotropy, Reflectance |