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Mining for Geographically Disperse Communities in Social Networks by Leveraging Distance Modularity

机译:利用距离模块挖掘社交网络中的地理分散社区

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Social networks where the actors occupy geospatial locations are prevalent in military, intelligence, and policing operations such as counter-terrorism, counter-insurgency, and combating organized crime. These networks are often derived from a variety of intelligence sources. The discovery of communities that are geographically disperse stems from the requirement to identify higher-level organizational structures, such as a logistics group that provides support to various geographically disperse terrorist cells. We apply a variant of Newman-Girvan modularity to this problem known as distance modularity. To address the problem of finding geographically disperse communities, we modify the well-known Louvain algorithm to find partitions of networks that provide near-optimal solutions to this quantity. We apply this algorithm to numerous samples from two real-world social networks and a terrorism network data set whose nodes have associated geospatial locations. Our experiments show this to be an effective approach and highlight various practical considerations when applying the algorithm to distance modularity maximization. Several military, intelligence, and law-enforcement organizations are working with us to further test and field software for this emerging application.
机译:参与者占据地理空间位置的社交网络普遍存在于军事,情报和警务行动中,例如反恐,平叛和打击有组织犯罪。这些网络通常来自各种情报来源。发现地理上分散的社区源于确定更高层次的组织结构的要求,例如,后勤小组为各种地理上分散的恐怖分子牢房提供支持。我们将Newman-Girvan模块化的变体应用于这个称为距离模块化的问题。为了解决查找地理上分散的社区的问题,我们修改了著名的Louvain算法,以查找为该数量提供接近最佳解决方案的网络分区。我们将此算法应用于来自两个现实世界社交网络和一个恐怖主义网络数据集的大量样本,这些数据的节点具有关联的地理空间位置。我们的实验表明这是一种有效的方法,并在将算法应用于距离模块化最大化时突出了各种实际考虑因素。几个军事,情报和执法组织正在与我们合作,进一步为这种新兴应用程序测试和现场软件。

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