Cellular automata (CA) has proved to be effective and efficient in conducting urban expansion simulation. The generation of cell transition rules is a crucial step for a CA model. In this research, a whale optimization algorithm–based CA (WOA-CA) model was innovatively proposed. In the proposed model, a WOA was adapted to help mining the transition rules of the CA model, which was also evaluated and utilized in the case study of Guangzhou, simulating urban expansion from the year of 2000 to 2010. The experiment results demonstrated that the proposed model is effective and the simulation result is able to reach an overall accuracy of 92.16% with a Kappa coefficient of 0.744, and the value of Moran’s I is also quite close to that of the actua...
Cellular automata models consist of a simulation environment represented by a gridded space (raster)...
A new intelligent algorithm of geographical cellular automata (CA) based on ant colony optimization ...
Despite the recognition of cellular automata (CA) as a flexible and powerful tool for urban growth s...
This paper presents an improved cellular automata (CA) model optimised using an adaptive genetic alg...
Accurate simulations and predictions of urban expansion are critical to manage urbanization and expl...
This paper presents an advanced method in urban growth modeling to discover transition rules of cell...
Insufficient research has been done on integrating artificial-neural-network-based cellular automata...
This paper presents an improved cellular automata (CA) model of urban growth based on particle swarm...
Quantifying the contribution of driving factors is crucial to urban expansion modeling based on cell...
An effective simulation of the urban sprawl in an urban agglomeration is conducive to making regiona...
Simulation models based on cellular automata (CA) are widely used for understanding and simulating c...
Urban expansion is a complex spatial transformation process over time. It converts various land-use ...
Insufficient research has been done on integrating artificial-neural-network-based cellular automata...
As a complex non-linear and dynamic process,full understanding of the urban morphology and evolution...
Cellular automata (CA) is a spatially explicit modeling tool that has been shown to be effective in ...
Cellular automata models consist of a simulation environment represented by a gridded space (raster)...
A new intelligent algorithm of geographical cellular automata (CA) based on ant colony optimization ...
Despite the recognition of cellular automata (CA) as a flexible and powerful tool for urban growth s...
This paper presents an improved cellular automata (CA) model optimised using an adaptive genetic alg...
Accurate simulations and predictions of urban expansion are critical to manage urbanization and expl...
This paper presents an advanced method in urban growth modeling to discover transition rules of cell...
Insufficient research has been done on integrating artificial-neural-network-based cellular automata...
This paper presents an improved cellular automata (CA) model of urban growth based on particle swarm...
Quantifying the contribution of driving factors is crucial to urban expansion modeling based on cell...
An effective simulation of the urban sprawl in an urban agglomeration is conducive to making regiona...
Simulation models based on cellular automata (CA) are widely used for understanding and simulating c...
Urban expansion is a complex spatial transformation process over time. It converts various land-use ...
Insufficient research has been done on integrating artificial-neural-network-based cellular automata...
As a complex non-linear and dynamic process,full understanding of the urban morphology and evolution...
Cellular automata (CA) is a spatially explicit modeling tool that has been shown to be effective in ...
Cellular automata models consist of a simulation environment represented by a gridded space (raster)...
A new intelligent algorithm of geographical cellular automata (CA) based on ant colony optimization ...
Despite the recognition of cellular automata (CA) as a flexible and powerful tool for urban growth s...