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Testing spatial autocorrelation in weighted networks: the modes permutation test

机译:在加权网络中测试空间自相关:模式置换测试

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摘要

In a weighted spatial network, as specified by an exchange matrix, the variances of the spatial values are inversely proportional to the size of the regions. Spatial values are no more exchangeable under independence, thus weakening the rationale for ordinary permutation and bootstrap tests of spatial autocorrelation. We propose an alternative permutation test for spatial autocorrelation, based upon exchangeable spatial modes, constructed as linear orthogonal combinations of spatial values. The coefficients obtain as eigenvectors of the standardized exchange matrix appearing in spectral clustering and generalize to the weighted case the concept of spatial filtering for connectivity matrices. Also, two proposals aimed at transforming an accessibility matrix into an exchange matrix with a priori fixed margins are presented. Two examples (inter-regional migratory flows and binary adjacency networks) illustrate the formalism, rooted in the theory of spectral decomposition for reversible Markov chains.
机译:在由交换矩阵指定的加权空间网络中,空间值的方差与区域的大小成反比。在独立状态下,空间值不再可交换,因此削弱了进行空间自相关的普通置换和自举测试的原理。基于可交换的空间模式,我们建议将空间自相关性的替代排列测试构造为空间值的线性正交组合。该系数作为出现在频谱聚类中的标准化交换矩阵的特征向量而获得,并在加权情况下推广用于连通性矩阵的空间滤波的概念。此外,提出了两个旨在将可访问性矩阵转换为具有先验固定边距的交换矩阵的建议。两个示例(区域间迁移流和二元邻接网络)说明了形式主义,其起源于可逆马尔可夫链的频谱分解理论。

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