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Xun Liang
ORCID
Publication Activity (10 Years)
Years Active: 2018-2024
Publications (10 Years): 17
Top Topics
Land Use Change
High Spatial Resolution
Geospatial Data
Cellular Automata
Top Venues
Int. J. Geogr. Inf. Sci.
Comput. Environ. Urban Syst.
CoRR
Trans. GIS
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Publications
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Huan Gao
,
Zhewei Liang
,
Qingfeng Guan
,
Xun Liang
,
Wen Zeng
A parallel framework on hybrid architectures for raster-based geospatial cellular automata models.
Int. J. Geogr. Inf. Sci.
38 (7) (2024)
Zhanjun He
,
Xubin Wang
,
Xun Liang
,
Liang Wu
,
Jing Yao
Integrating spatiotemporal co-evolution patterns of land types with cellular automata to enhance the reliability of land use projections.
Int. J. Geogr. Inf. Sci.
38 (5) (2024)
Yao Yao
,
Ying Jiang
,
Zhenhui Sun
,
Linlong Li
,
Dongsheng Chen
,
Kailu Xiong
,
Anning Dong
,
Tao Cheng
,
Haoyan Zhang
,
Xun Liang
,
Qingfeng Guan
Applicability and sensitivity analysis of vector cellular automata model for land cover change.
Comput. Environ. Urban Syst.
109 (2024)
Yang Li
,
Mingyuan Bai
,
Qingfeng Guan
,
Zi Ming
,
Xun Liang
,
Gang Liu
,
Junbin Gao
nearest neighbors queries with conic section discriminances.
Int. J. Geogr. Inf. Sci.
37 (10) (2023)
Haoming Zhuang
,
Xiaoping Liu
,
Xun Liang
,
Yuchao Yan
,
Jinqiang He
,
Yiling Cai
,
Changjiang Wu
,
Xinchang Zhang
,
Honghui Zhang
Tensor-CA: A high-performance cellular automata model for land use simulation based on vectorization and GPU.
Trans. GIS
26 (2) (2022)
Yao Yao
,
Yifei Liu
,
Qingfeng Guan
,
Ye Hong
,
Ruifan Wang
,
Ruoyu Wang
,
Xun Liang
Spatiotemporal distribution of human trafficking in China and predicting the locations of missing persons.
Comput. Environ. Urban Syst.
85 (2021)
Yongting Pan
,
Wen Zeng
,
Qingfeng Guan
,
Yao Yao
,
Xun Liang
,
Yaqian Zhai
,
Shengyan Pu
Variability in and mixtures among residential vacancies at granular levels: Evidence from municipal water consumption data.
Comput. Environ. Urban Syst.
90 (2021)
Chunyang Huang
,
Xun Liang
,
Zhijiang Yang
,
Qingfeng Guan
A Fine-Grained Mixed Land Use Decomposition Method Based on Multi-source Geospatial Data.
SpatialDI
(2021)
Xun Liang
,
Qingfeng Guan
,
Keith C. Clarke
,
Shishi Liu
,
Bingyu Wang
,
Yao Yao
Understanding the drivers of sustainable land expansion using a patch-generating land use simulation (PLUS) model: A case study in Wuhan, China.
Comput. Environ. Urban Syst.
85 (2021)
Xun Liang
,
Qingfeng Guan
,
Keith C. Clarke
,
Shishi Liu
,
Bingyu Wang
,
Yao Yao
Understanding the drivers of sustainable land expansion using a patch-level simulation model: A case study in Wuhan, China.
CoRR
(2020)
Yaqian Zhai
,
Yao Yao
,
Qingfeng Guan
,
Xun Liang
,
Xia Li
,
Yongting Pan
,
Hanqiu Yue
,
Zehao Yuan
,
Jianfeng Zhou
Simulating urban land use change by integrating a convolutional neural network with vector-based cellular automata.
Int. J. Geogr. Inf. Sci.
34 (7) (2020)
Hong Shi
,
Xia Li
,
Zhenzhi Yang
,
Taohong Li
,
Yun Ren
,
Tingting Liu
,
Ningdong Yang
,
Hang Zhang
,
Guangzhao Chen
,
Xun Liang
Tourism land use simulation for regional tourism planning using POIs and cellular automata.
Trans. GIS
24 (4) (2020)
Yao Yao
,
Chen Qian
,
Ye Hong
,
Qingfeng Guan
,
Jingmin Chen
,
Liangyang Dai
,
Zhangwei Jiang
,
Xun Liang
Delineating Mixed Urban "Jobs-Housing" Patterns at a Fine Scale by Using High Spatial Resolution Remote-Sensing Imagery.
Complex.
2020 (2020)
Xun Liang
,
Xiaoping Liu
,
Guangliang Chen
,
Jiye Leng
,
Youyue Wen
,
Guangzhao Chen
Coupling fuzzy clustering and cellular automata based on local maxima of development potential to model urban emergence and expansion in economic development zones.
Int. J. Geogr. Inf. Sci.
34 (10) (2020)
Yao Yao
,
Daiqiang Wu
,
Ye Hong
,
Dongsheng Chen
,
Zhaotang Liang
,
Qingfeng Guan
,
Xun Liang
,
Liangyang Dai
Analyzing the Effects of Rainfall on Urban Traffic-Congestion Bottlenecks.
IEEE J. Sel. Top. Appl. Earth Obs. Remote. Sens.
13 (2020)
Xun Liang
Simulating the future urban growth in Xiongan New Area: a upcoming big city in China.
CoRR
(2018)
Xun Liang
,
Xiaoping Liu
,
Dan Li
,
Hui Zhao
,
Guangzhao Chen
Urban growth simulation by incorporating planning policies into a CA-based future land-use simulation model.
Int. J. Geogr. Inf. Sci.
32 (11) (2018)