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Forest fire spread simulation algorithm based on cellular automata

机译:基于蜂窝自动机的森林灭火仿真算法

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摘要

Traditional models result in low efficiency and poor accuracy when simulating the spread of large-scale forest fires. We constructed an improved model that couples cellular automata with an existing forest fire model to ensure better time accuracy of forest fire spread. Our model considers the impact of time steps on simulation accuracy to provide an optimal time step value. The model was tested using a case study of forest fire spread at Daxing'an Mountain in May 2006. The results show that the optimal time step for the forest fire spread geographic cellular automata simulation algorithm is 1/8 of the time taken for cellular material to be completely combusted. When compared with real fire data from Landsat Thematic Mapper (TM) images, our model was found to have high temporal and spatial consistency, with a mean Kappa coefficient of 0.6352 and mean accuracy of 87.89%. This algorithm can be used to simulate and predict forest fire spread and is also reversible (i.e., it can identify fire source points).
机译:当模拟大规模森林火灾的蔓延时,传统模型导致效率低,准确性差。我们构建了一种改进的模型,使蜂窝自动机与现有的森林火灾模型耦合,以确保森林火灾蔓延的更好的时间准确性。我们的模型考虑了时间步骤对模拟精度的影响,以提供最佳的时间步长。 2006年5月在大兴安山区森林火灾案例研究检测了该模型。结果表明,森林火灾扩散地理蜂窝自动机仿真算法的最佳时间步骤是蜂窝材料的1/8完全燃烧。与来自Landsat主题映射器(TM)图像的真实火灾数据相比,我们的模型被发现具有高的时间和空间一致性,其平均kappa系数为0.6352,平均精度为87.89%。该算法可用于模拟和预测森林火灾扩散,也是可逆的(即,它可以识别消防源点)。

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