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首页> 外文期刊>Transactions in GIS: TG >Integrating a Raster Geographical Information System with Multi-Objective Land Allocation Optimization for Conservation Reserve Design
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Integrating a Raster Geographical Information System with Multi-Objective Land Allocation Optimization for Conservation Reserve Design

机译:将栅格地理信息系统与多目标土地分配优化相结合以进行保护区设计

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摘要

The multi-objective land allocation problem is to optimize the selection of land for different uses based on a set of decision objectives. For most applications, a geographical information system (GIS) is either absent or loosely coupled through file exchange. In this article the evolutionary algorithm (EA), a heuristic solution method for optimization problems, is integrated with a raster GIS to form a spatial decision support system (SDSS) for multi-objective conservation reserve design. The SDSS effectively combines the functions of a GIS for data management, analysis, and visualization, with the optimization capability of the EA; and provides a uniform way to solve conservation reserve design problems with different types of constraints and objectives. The SDSS is demonstrated through application to the creation of conservation reserves in Bolivia to protect 17 endemic mammals.
机译:多目标土地分配问题是基于一组决策目标优化针对不同用途的土地选择。对于大多数应用程序,不存在地理信息系统(GIS)或通过文件交换将其松散耦合。在本文中,进化算法(EA)是一种用于优化问题的启发式求解方法,与栅格GIS集成在一起,形成了用于多目标保护区设计的空间决策支持系统(SDSS)。 SDSS有效地结合了GIS用于数据管理,分析和可视化的功能,以及EA的优化功能;并提供统一的方法来解决具有不同类型的约束和目标的保护区设计问题。通过在玻利维亚建立保护区以保护17种地方性哺乳动物的应用,证明了SDSS。

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