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Bin Zhang
ORCID
Publication Activity (10 Years)
Years Active: 2019-2024
Publications (10 Years): 9
Top Topics
Distance Transform
Maximum Entropy
Chaotic Dynamics
Cellular Automata
Top Venues
Int. J. Geogr. Inf. Sci.
Trans. GIS
Remote. Sens.
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Publications
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Haoran Zeng
,
Haijun Wang
,
Bin Zhang
An urban cellular automata model based on a spatiotemporal non-stationary neighborhood.
Int. J. Geogr. Inf. Sci.
38 (5) (2024)
Haoran Zeng
,
Haijun Wang
,
Bin Zhang
A high-performance cellular automata model for urban expansion simulation based on convolution and graphic processing unit.
Trans. GIS
28 (4) (2024)
Youcheng Song
,
Haijun Wang
,
Bin Zhang
,
Haoran Zeng
,
Jiahui Li
,
Junjie Zhang
A methodology to Geographic Cellular Automata model accounting for spatial heterogeneity and adaptive neighborhoods.
Int. J. Geogr. Inf. Sci.
38 (4) (2024)
Sanwei He
,
Shifa Ma
,
Bin Zhang
,
Guangdong Li
,
Zhenjie Yang
Early Warning of the Carbon-Neutral Pressure Caused by Urban Agglomeration Growth: Evidence from an Urban Network-Based Cellular Automata Model in the Greater Bay Area.
Remote. Sens.
15 (2) (2023)
Haoran Zeng
,
Haijun Wang
,
Bin Zhang
,
Quan Wang
A methodology to quantify the neighborhood decay effect of urban cellular automata models.
Int. J. Geogr. Inf. Sci.
37 (6) (2023)
Bin Zhang
,
Chang Xia
The effects of sample size and sample prevalence on cellular automata simulation of urban growth.
Int. J. Geogr. Inf. Sci.
36 (1) (2022)
Haijun Wang
,
Bin Zhang
,
Chang Xia
,
Sanwei He
,
Wenting Zhang
Using a maximum entropy model to optimize the stochastic component of urban cellular automata models.
Int. J. Geogr. Inf. Sci.
34 (5) (2020)
Bin Zhang
,
Haijun Wang
,
Sanwei He
,
Chang Xia
Analyzing the effects of stochastic perturbation and fuzzy distance transformation on Wuhan urban growth simulation.
Trans. GIS
24 (6) (2020)
Chang Xia
,
Anqi Zhang
,
Haijun Wang
,
Bin Zhang
Modeling urban growth in a metropolitan area based on bidirectional flows, an improved gravitational field model, and partitioned cellular automata.
Int. J. Geogr. Inf. Sci.
33 (5) (2019)