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A GIS-based Logic Scoring of Preference method for evaluation of land capability and suitability for agriculture

机译:基于GIS的偏好逻辑评分法用于评价土地利用能力和农业适用性。

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The growth of urban areas and industrial intensification has contributed to a reduction in valuable agricultural lands and to various environmental impacts including climate change. This reduction in agricultural land severely impacts food production and food security. In order to effectively address this issue, spatial analytical and optimization methods based on evaluating multiple spatial criteria are needed to evaluate the capability and suitability of available lands for current and future food production. The objective of this study is to implement the GIS-based Logic Scoring of Preference (ISP) method as an improved method of multicriteria decision making for evaluating areas suitable for agriculture. Evaluation criteria included soil, topographic, climatic, economic, land use and accessibility attributes. The ISP method allows for the stepwise aggregation of a large number of inputs to represent the full range of human decision logic without losing weighted significance of the inputs. Geospatial datasets from Boulder County, Colorado, USA provides the context to demonstrate the LSP method for agricultural land capability and land suitability assessment. The ISP method uses a large number of inputs and suitability functions integrated into the development of LSP aggregation structures to represent the full range of human decision-making logic and to evaluate decision-making objectives. The method incorporates a larger number of criterion inputs, represents the full range of human decision-making, and produces realistic agricultural land capability and suitability maps thereby making it an effective tool for integrated regional land-use planning. (c) 2016 Elsevier B.V. All rights reserved.
机译:城市地区的增长和工业集约化导致宝贵的农业用地减少以及包括气候变化在内的各种环境影响。农业用地的减少严重影响了粮食生产和粮食安全。为了有效解决这一问题,需要基于评估多个空间标准的空间分析和优化方法,以评估现有和未来粮食生产可用土地的能力和适宜性。这项研究的目的是实现基于GIS的逻辑优先评分(ISP)方法,作为一种用于评估适用于农业的地区的多准则决策的改进方法。评价标准包括土壤,地形,气候,经济,土地利用和可及性属性。 ISP方法允许逐步汇总大量输入,以代表整个人类决策逻辑范围,而不会丢失输入的加权重要性。来自美国科罗拉多州博尔德县的地理空间数据集为演示LSP方法用于农地能力和土地适宜性评估提供了背景。 ISP方法使用大量输入和适合性功能,这些功能和适合性功能集成到LSP聚合结构的开发中,以代表整个人类决策逻辑并评估决策目标。该方法包含大量的标准输入,代表了人类的全部决策,并产生了现实的农业用地能力和适宜性图,从而使其成为综合的区域土地使用规划的有效工具。 (c)2016 Elsevier B.V.保留所有权利。

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