基于GIS、直觉模糊AHP和模糊TOPSIS的可行地点城市公园开发优先级建模

Arif Wicaksono
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引用次数: 2

摘要

由于先前的研究已经获得了茂物市公共城市公园的可行位置,迫切需要决策者了解公共城市公园的优先发展位置。因此,本研究汇总了四个多空间标准,即与贫民窟社区的距离、可达性、坡度和土地价值,用于PUP发展优先级建模。利用直觉模糊层次分析法(IF-AHP)对向量数据集形式的这四个标准进行加权,以考虑专家判断和多空间数据处理可能产生的犹豫、模糊和模糊性。结果表明:可达性权重为0.261,土地价值权重为0.259,到贫民窟距离权重为0.255,坡度权重为0.225。将标准权重输入到模糊排序技术中,通过与理想解的相似性(TOPSIS)和地理信息系统(GIS)对位置优先级进行排序。模糊TOPSIS结果表明,CCi值范围最大(0.654 ~ 0.76)的非常高优先级提供了0.14 km2的可行的PUP开发面积,分布在10个地点。在26个地点(CCi值为0.439 ~ 0.546)中,可行的PUP发展面积最大,面积约为0.38平方公里。
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Priority modeling for public urban park development in feasible locations using GIS, Intuitionistic Fuzzy AHP, and Fuzzy TOPSIS
As feasible locations of public urban park in Bogor Municipality have been acquired in a previous study, decision makers are urgently needed to be informed on which locations should be prioritized for public urban park (PUP) development. Therefore, this study aggregates four multi-spatial criteria for PUP development priority modeling, namely distance to slum neighborhood, accessibility, slope, and land value. These four criteria in form of vector datasets were weighted using intuitionistic fuzzy analytical hierarchy process (IF-AHP) to consider the hesitancy, vagueness, and fuzziness might arise from experts’ judgement as well as from multi-spatial data processing. Resulted criteria weights from IF-AHP show that accessibility weight 0.261, land value weight 0.259, distance to slum weight 0.255, and slope weight 0.225, respectively. Criteria weights were inputted into fuzzy technique for order preference by similarity to the ideal solution (TOPSIS) and geographic information system (GIS) to rank location priority. Results from fuzzy TOPSIS show that very high priority class which has the biggest CCi values range (0.654-0.76) provides 0.14 km2 area of feasible PUP development scattered in 10 locations. The biggest area for feasible PUP development is generated by medium priority class (CCi values 0.439-0.546) in 26 locations and approximately area of 0.38 km2.
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24 weeks
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