Pontius R G, Huffaker D, Denman K. Useful techniques of validation for spatially-explicit land-change models. Ecological Modelling, 2004, 179(4): 445~461.
[2]
Wolfram S. Cellular Automata as models of complexity. Nature, 1984, 311(10): 419~424.
[3]
Wu F. Calibration of stochastic cellular automata: The application to rural-urban land conversions. International Journal of Geographical Information Science, 2002, 16(8): 795~818.
Li Xia, Yeh A G O. Neural-network-based cellular automata for simulating multiple land use changes using GIS. International Journal of Geographical Information Science, 2002, 16(4): 323~343.
[8]
冯永玖, 童小华, Liu Yan, 等. 城市形态演化的粒子群智能随机元胞模型与应用——以上海市嘉定区为例. 地球信息科学学报, 2010, 12(1): 17~25.
[9]
Moreno Niandry, Fang Wang, Danielle J Marceau. Implementation of a dynamic neighborhood in a land-use vector-based cellular automata model. Computers, Environment and Urban Systems, 2009, 33: 44~54.
[10]
Robert Gilmore Pontius Jr, Neeti Neeti. Uncertainty in the difference between maps of future land change scenarios. Sustainable Science, 2010, 5: 39~50.
[11]
Liu Yan. The impact of neighbourhood size on the accuracy of cellular automata-based urban modelling. Applied GIS, 2007, 3(5): 1~14.
Richard G Lathrop, David L Tulloch, et al. Consequences of land use change in the New York-New Jersey Highlands,USA: Landscape indicators of forest and watershed integrity. Landscape and Urban Planning, 2007, 9: 150~159.
[17]
Wu F. SimLand: A prototype to simulate land conversion through the integrated GIS and CA with AHP-derived transition rules. International Journal of Geographical Information Science, 1998, 12(1): 63 ~82.