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Regional land-use allocation using a coupled MAS and GA model: from local simulation to global optimization, a case study in Caidian District, Wuhan, China

机译:使用MAS和GA耦合模型的区域土地利用分配:从局部模拟到全局优化,以中国武汉蔡甸区为例

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摘要

China is facing the pressures of both rapid economic development and environmental protection, and land-use allocation optimization is an important way to manage the conflicts between these pressures and to achieve sustainable development. Optimization of land-use allocation is a nonlinear multiobjective spatial optimization problem, and a purely local simulation model or global optimization model is insufficient to solve it. It is essential to bridge the gap between the two models through the combination of top-down and bottom-up approaches. This study integrates a multiagent system (MAS) that simulates the behaviors of land-use stakeholders with regard to their choices of specific locations, with a genetic algorithm (GA) that simultaneously evaluates and optimizes land-use configurations to meet various regional development objectives. The model is expected to achieve the optimization of land use in terms of the composition and spatial configuration. Caidian District, Wuhan, China, was chosen as the study area to test the model in this paper. The results show that the performance of the coupled model is superior to a pure GA model or MAS model. The optimal configuration improves on the economic output, spatial compactness, and carbon storage of the current configuration and promotes sustainable regional land-use development from the local scale to the regional scale.
机译:中国正面临着经济快速发展和环境保护的压力,优化土地利用分配是解决这些压力之间的冲突并实现可持续发展的重要途径。土地利用分配的优化是一个非线性的多目标空间优化问题,仅靠局部模拟模型或全局优化模型是无法解决的。通过自上而下和自下而上的方法相结合,弥合两个模型之间的鸿沟至关重要。这项研究将多模拟系统(MAS)与遗传算法(GA)集成在一起,该系统模拟了土地利用利益相关者在特定地点选择方面的行为,同时遗传算法(GA)可以评估和优化土地利用配置,以满足各种区域发展目标。该模型有望在组成和空间配置方面实现土地利用的优化。本文以武汉市蔡甸区为研究区域进行模型测试。结果表明,耦合模型的性能优于纯GA模型或MAS模型。最优配置改善了当前配置的经济产出,空间紧凑性和碳储存,并促进了从地方规模到区域规模的可持续区域土地利用发展。

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