[1] |
李胜鹏, 柳建玲, 林津, 等. 基于1980—2018年土地利用变化的福建省生境质量时空演变[J]. 应用生态学报, 2020, 31(12): 4080-4090.
|
|
[Li Shengpeng, Liu Jianling, Lin Jin, et al. Spatial and temporal evolution of habitat quality in Fujian Province, China based on the land use change from 1980 to 2018[J]. Chinese Journal of Applied Ecology, 2020, 31(12): 4080-4090. ]
|
[2] |
刘纪远, 张增祥, 庄大方, 等. 20世纪90年代中国土地利用变化时空特征及其成因分析[J]. 地理研究, 2003, 22(1): 1-12.
|
|
[Liu Jiyuan, Zhang Zengxiang, Zhuang Dafang, et al. A study on the spatial-temporal dynamic changes of land-use and driving forces analyses of China in the 1990s[J]. Geographical Research, 2003, 22(1): 1-12. ]
|
[3] |
Veldkamp A, Lambin E F. Predicting land-use change[J]. Agriculture, Ecosystems and Environment, 2001, 85(1): 1-6.
doi: 10.1016/S0167-8809(01)00199-2
|
[4] |
李保杰, 顾和和, 纪亚洲. 基于CLUE-S模型的矿区土地利用变化情景模拟——以徐州市贾汪矿区为例[J]. 热带地理, 2018, 38(2): 274-281.
|
|
[Li Baojie, Gu Hehe, Ji Yazhou. Simulation of land use change in coal mining area under different scenarios based on the CLUE-S model: A case study of jiawang mining area in Xuzhou city[J]. Tropical Geography, 2018, 38(2): 274-281. ]
|
[5] |
刘彦文, 刘成武, 何宗宜, 等. 基于地理加权回归模型的武汉城市圈生态用地时空演变及影响因素[J]. 应用生态学报, 2020, 31(3): 987-998.
|
|
[Liu Yanwen, Liu Chengwu, He Zongyi, et al. Spatial-temporal evolution of ecological land and influence factors in Wuhan urban agglomeration based on geographically weighted regression model[J]. Chinese Journal of Applied Ecology, 2020, 31(3): 987-998. ]
|
[6] |
孙毅中, 杨静, 宋书颖, 等. 多层次矢量元胞自动机建模及土地利用变化模拟[J]. 地理学报, 2020, 75(10): 2164-2179.
doi: 10.11821/dlxb202010009
|
|
[Sun Yizhong, Yang Jing, Song Shuying, et al. Modeling of multilevel vector cellular automata and its simulation of land use change[J]. Acta Geographica Sinica, 2020, 75(10): 2164-2179. ]
doi: 10.11821/dlxb202010009
|
[7] |
徐红涛, 陈春波, 郑宏伟, 等. 基于相关分析和自适应遗传算法的盐渍化建模变量和参数优选[J]. 地球信息科学学报, 2020, 22(7): 1497-1509.
|
|
[Xu Hongtao, Chen Chunbo, Zheng Hongwei, et al. Correlation analysis and adaptive genetic algorithm based feature subset and model parameter optimization in salinization monitoring[J]. Journal of Geo-information Science, 2020, 22(7): 1497-1509. ]
|
[8] |
王梓洋, 石培基, 张学斌, 等. 基于多智能体模型的兰州市城镇用地扩展模拟[[J]. 应用生态学报, 2021, 32(6): 2169-2179.
|
|
[Wang Ziyang, Shi Peiji, Zhang Xuebin, et al. Simulation of Lanzhou urban land expansion based on multi-agent model[J]. Chinese Journal of Applied Ecology, 2021, 32(6): 2169-2179. ]
|
[9] |
戴尔阜, 马良. 土地变化模型方法综述[J]. 地理科学进展, 2018, 37(1): 152-162.
doi: 10.18306/dlkxjz.2018.01.016
|
|
[Dai Erfu, Ma Liang. Review on land change modeling approaches[J]. Progress in Geography, 2018, 37(1): 152-162. ]
doi: 10.18306/dlkxjz.2018.01.016
|
[10] |
周成虎, 欧阳, 马廷, 等. 地理系统模拟的CA模型理论探讨[J]. 地理科学进展, 2009, 28(6): 833-838.
|
|
[Zhou Chenghu, Ou Yang, Ma Ting, et al. Theoretical perspectives of CA-based geographical system modeling[J]. Progress in Geography, 2009, 28(6): 833-838. ]
|
[11] |
黎夏, 刘小平. 基于案例推理的元胞自动机及大区域城市演变模拟[J]. 地理学报, 2007, 75(10): 1097-1109.
|
|
[Li Xia, Liu Xiaoping. Case-based cellular automaton for simulating urban development in a large complex region[J]. Acta Geographica Sinica, 2007, 75(10): 1097-1109. ]
|
[12] |
Wu F L. Calibration of stochastic cellular automata: The application to rural-urban land conversions[J]. International Journal of Geographical Information Science, 2002, 16(8): 795-818.
doi: 10.1080/13658810210157769
|
[13] |
杨青生, 黎夏. 基于遗传算法自动获取CA模型的参数——以东莞市城市发展模拟为例[J]. 地理研究, 2007, 26(2): 229-237.
|
|
[Yang Qingsheng, Li Xia. Calibrating urban cellular automata using genetic algorithms[J]. Geographical Research, 2007, 26(2): 229-237. ]
|
[14] |
张大川, 刘小平, 姚尧, 等. 基于随机森林CA的东莞市多类土地利用变化模拟[J]. 地理与地理信息科学, 2016, 32(5): 29-36.
|
|
[Zhang Dachuan, Liu Xiaoping, Yao Yao, et al. Simulating spatiotemporal change of multiple land use types in Dongguan by using random forest based on cellular automata[J]. Geography and Geo-Information Science, 2016, 32(5): 29-36. ]
|
[15] |
马慧娟, 高小红, 谷晓天. 随机森林方法支持的复杂地形区土地利用/土地覆被分类研究[J]. 地球信息科学学报, 2019, 21(3): 359-371.
doi: 10.12082/dpxxkx.2019.180346
|
|
[Ma Huijuan, Gao Xiaohong, Gu Xiaotian. Random forest classification of Landsat 8 imagery for the complex terrain area based on the combination of spectral, topographic and texture information[J]. Journal of GeoInformation Science, 2019, 21(3): 359-371. ]
doi: 10.12082/dpxxkx.2019.180346
|
[16] |
陈凯, 刘凯, 柳林, 等. 基于随机森林的元胞自动机城市扩展模拟——以佛山市为例[J]. 地理科学进展, 2015, 34(8): 937-946.
doi: 10.18306/dlkxjz.2015.08.001
|
|
[Chen Kai, Liu Kai, Liu Lin, et al. Urban expansion simulation by random-forest-based cellular automata: A case study of Foshan City[J]. Progress in Geography, 2015, 34(8): 937-946. ]
doi: 10.18306/dlkxjz.2015.08.001
|
[17] |
卞正富, 张燕平. 徐州煤矿区土地利用格局演变分析[J]. 地理学报, 2006, 61(4): 349-358.
|
|
[Bian Zhengfu, Zhang Yanping. Land use changes in Xuzhou coal mining area[J]. Acta Geographica Sinica, 2006, 61(4): 349-358. ]
|
[18] |
段语凤, 张玉秀, 余创. 煤炭井工开采对干旱荒漠区植被动态变化的影响[J]. 生态学报, 2020, 40(23): 8717-8728.
|
|
[Duan Yufeng, Zhang Yuxiu, Yu Chuang. Effects of the underground coal mining on the dynamic changes of vegetation in arid desert area[J]. Acta Ecologica Sinica, 2020, 40(23): 8717-8728. ]
|
[19] |
史晓琼, 杨泽元, 张艳娜, 等. 陕北高强度采煤对生态环境影响的研究进展[J]. 煤炭技术, 2016, 35(1): 314-316.
|
|
[Shi Xiaoqiong, Yang Zeyuan, Zhang Yanna, et al. Reviews of influence by high-intensity coal mining on ecological environment in Northern Shanxi[J]. Coal Technology, 2016, 35(1): 314-316. ]
|
[20] |
邹雅婧, 闫庆武, 谭学玲, 等. 渭北矿区土壤侵蚀评估及驱动因素分析[J]. 干旱区地理, 2019, 42(6): 1387-1394.
|
|
[Zou Yajing, Yan Qingwu, Tan Xueling, et al. Evaluation of soil erosion and driving factors analysis in Weibei mining area[J]. Arid Land Geography, 2019, 42(6): 1387-1394. ]
|
[21] |
Ye T T, Zhao N Z, Yang X C, et al. Improved population mapping for China using rely sensed and points-of-interest data within a random forests model[J]. Science of the Total Environment, 2019, 658: 936-946.
doi: 10.1016/j.scitotenv.2018.12.276
|
[22] |
Liu X P, Liang X, Li X, et al. A future land use simulation model (FLUS) for simulating multiple land use scenarios by coupling human and natural effects[J]. Landscape and Urban Planning, 2017, 168: 94-116.
doi: 10.1016/j.landurbplan.2017.09.019
|
[23] |
Li X, Anthony Gar-On Yeh. Neural-network-based cellular automata for simulating multiple land use changes using GIS[J]. International Journal of Geographical Information Science, 2002, 16(4): 323-343.
doi: 10.1080/13658810210137004
|
[24] |
张经度, 梅志雄, 吕佳慧, 等. 纳入空间自相关的FLUS模型在土地利用变化多情景模拟中的应用[J]. 地球信息科学学报, 2020, 22(3): 531-542.
doi: 10.12082/dqxxkx.2020.190359
|
|
[Zhang Jingdu, Mei Zhixiong, Lyu Jiahui, et al. Simulating multiple land use scenarios based on the FLUS model considering spatial autocorrelation[J]. Journal of GeoInformation Science, 2020, 22(3): 531-542. ]
doi: 10.12082/dqxxkx.2020.190359
|
[25] |
秦埼瑞, 李雪梅, 陈庆伟, 等. 基于FLUS模型的天山山区未来土地利用变化预估[J]. 干旱区研究, 2019, 36(5): 1270-1279.
|
|
[Qin Qirui, Li Xuemei, Chen Qingwei, et al. Estimation of future land use change in the Tianshan mountainous based on FLUS model[J]. Arid Zone Research, 2019, 36(5): 1270-1279. ]
|
[26] |
孙鸿超, 张正祥. 吉林省松花江流域景观格局脆弱性变化及其驱动力[J]. 干旱区研究, 2019, 36(4): 1005-1041.
|
|
[Sun Hongchao, Zhang Zhengxiang. Changes of landscape pattern vulnerability of Songhua River Basin in Jilin Province and its drivingforces[J]. Arid Zone Research, 2019, 36(4): 1005-1041. ]
|
[27] |
Mariana B, Lucian D. Random forest in remote sensing: A review of applications and future directions[J]. Journal of Photogrammetry and Remote Sensing, 2016, 114: 24-31.
doi: 10.1016/j.isprsjprs.2016.01.011
|
[28] |
Hadi M, Siva K B, Jamal B T, et al. Validation of CA-Markov for simulation of land use and cover change in the Langat Basin, Malaysia[J]. Journal of Geographic Information System, 2012, 4(6): 542-554.
doi: 10.4236/jgis.2012.46059
|