光栅图形
计算机科学
航程(航空)
变更检测
数据挖掘
多样性(控制论)
统计
人工智能
数学
复合材料
材料科学
作者
Robert Gilmore Pontius,Wideke Boersma,Jean‐Christophe Castella,Keith Clarke,Ton de Nijs,Charles Dietzel,Zengqiang Duan,Éric Fotsing,Noah Goldstein,Kasper Kok,E. Koomen,Christopher D. Lippitt,William J. McConnell,Mohamad Azani Alias,Bryan C. Pijanowski,Snehal Pithadia,Sean Sweeney,Tran Ngoc Trung,A. Veldkamp,Peter H. Verburg
标识
DOI:10.1007/s00168-007-0138-2
摘要
This paper applies methods of multiple resolution map comparison to quantify characteristics for 13 applications of 9 different popular peer-reviewed land change models. Each modeling application simulates change of land categories in raster maps from an initial time to a subsequent time. For each modeling application, the statistical methods compare: (1) a reference map of the initial time, (2) a reference map of the subsequent time, and (3) a prediction map of the subsequent time. The three possible two-map comparisons for each application characterize: (1) the dynamics of the landscape, (2) the behavior of the model, and (3) the accuracy of the prediction. The three-map comparison for each application specifies the amount of the prediction’s accuracy that is attributable to land persistence versus land change. Results show that the amount of error is larger than the amount of correctly predicted change for 12 of the 13 applications at the resolution of the raw data. The applications are summarized and compared using two statistics: the null resolution and the figure of merit. According to the figure of merit, the more accurate applications are the ones where the amount of observed net change in the reference maps is larger. This paper facilitates communication among land change modelers, because it illustrates the range of results for a variety of models using scientifically rigorous, generally applicable, and intellectually accessible statistical techniques.
科研通智能强力驱动
Strongly Powered by AbleSci AI