The 30 m annual land cover dataset and its dynamics in China from 1990 to 2019
The 30 m annual land cover dataset and its dynamics in China from 1990 to 2019
Jie Yang,Xin Huang
2021 · DOI: 10.5194/essd-13-3907-2021
Earth System Science Data · 1,885 件の引用
要旨
Abstract. Land cover (LC) determines the energy exchange, water and
carbon cycle between Earth's spheres. Accurate LC information is afundamental parameter for the environment and climate studies. Consideringthat the LC in China has been altered dramatically with the economicdevelopment in the past few decades, sequential and fine-scale LC monitoringis in urgent need. However, currently, fine-resolution annual LC datasetproduced by the observational images is generally unavailable for China dueto the lack of sufficient training samples and computational capabilities.To deal with this issue, we produced the first Landsat-derived annual Chinaland cover dataset (CLCD) on the Google Earth Engine (GEE) platform, whichcontains 30 m annual LC and its dynamics in China from 1990 to 2019. Wefirst collected the training samples by combining stable samples extractedfrom China's land-use/cover datasets (CLUDs) and visually interpretedsamples from satellite time-series data, Google Earth and Google Maps. Using335 709 Landsat images on the GEE, several temporal metrics were constructedand fed to the random forest classifier to obtain classification results. Wethen proposed a post-processing method incorporating spatial–temporalfiltering and logical reasoning to further improve the spatial–temporalconsistency of CLCD. Finally, the overall accuracy of CLCD reached 79.31 %based on 5463 visually interpreted samples. A further assessment based on5131 third-party test samples showed that the overall accuracy of CLCDoutperforms that of MCD12Q1, ESACCI_LC, FROM_GLC and GlobeLand30. Besides, we intercompared the CLCD with severalLandsat-derived thematic products, which exhibited good consistencies withthe Global Forest Change, the Global Surface Water, and three impervioussurface products. Based on the CLCD, the trends and patterns of China's LCchanges during 1985 and 2019 were revealed, such as expansion of impervioussurface (+148.71 %) and water (+18.39 %), decrease in cropland(−4.85 %) and grassland (−3.29 %), and increase in forest (+4.34 %). Ingeneral, CLCD reflected the rapid urbanization and a series of ecologicalprojects (e.g. Gain for Green) in China and revealed the anthropogenicimplications on LC under the condition of climate change, signifying itspotential application in the global change research. The CLCD datasetintroduced in this article is freely available athttps://doi.org/10.5281/zenodo.4417810 (Yang and Huang, 2021).