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Power of the Rank Adjacency Statistic to Detect Spatial Clustering in a Small Number of Regions

机译:秩邻接统计量在少数区域中检测空间聚类的能力

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摘要

The rank adjacency statistic D is a statistical method for assessing spatial autocorrelation or clustering of geographical data. It was originally proposed for summarizing the geographical patterns of cancer data in Scotland (IARC 1985). In this paper, we investigate the power of the rank adjacency statistic to detect spatial clustering when a small number of regions is involved. The investigations were carried out using Monte Carlo simulations, which involved generating patterned/clustered values and computing the power with which the D statistic would detect it. To investigate the effects of region shapes, structure of the regions, and definition of weights, simulations were carried out using two different region shapes, binary and nonhinary weights, and three different lattice structures. The results indicate that in the typical example of considering Canadian total mortality at the electoral district level, the D statistic had adequate power to detect general spatial autocorrelation in twenty-five or more regions. There was an inverse relationship between power and the level of connectedness of the regions, which depends on the weighting function, shape, and arrangement of the regions. The power of the D statistic was also found to compare favorably with that of Moran's I statistic.
机译:等级邻接统计量D是一种用于评估空间自相关或地理数据聚类的统计方法。最初是为了概述苏格兰癌症数据的地理模式而提出的(IARC 1985)。在本文中,我们研究了当涉及少量区域时,秩邻接统计量用于检测空间聚类的功能。研究是使用蒙特卡洛模拟进行的,其中涉及生成图案化/聚类值并计算D统计量将其检测到的功效。为了研究区域形状,区域结构和权重的定义的影响,使用两种不同的区域形状(二值和非律权重以及三种不同的晶格结构)进行了模拟。结果表明,在考虑加拿大在选举区一级的总死亡率的典型示例中,D统计量具有足够的能力来检测25个或更多地区的总体空间自相关。幂与区域的连接程度之间存在反比关系,这取决于加权函数,形状和区域的排列。还发现D统计量的功效与Moran I统计量相比具有优势。

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