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      Vision-Based Automated Crack Detection for Bridge Inspection : Vision-based automated crack detection for bridge inspection

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      Computer-Aided Civil and Infrastructure Engineering
      Wiley-Blackwell

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          Finding community structure in very large networks

          The discovery and analysis of community structure in networks is a topic of considerable recent interest within the physics community, but most methods proposed so far are unsuitable for very large networks because of their computational cost. Here we present a hierarchical agglomeration algorithm for detecting community structure which is faster than many competing algorithms: its running time on a network with n vertices and m edges is O(m d log n) where d is the depth of the dendrogram describing the community structure. Many real-world networks are sparse and hierarchical, with m ~ n and d ~ log n, in which case our algorithm runs in essentially linear time, O(n log^2 n). As an example of the application of this algorithm we use it to analyze a network of items for sale on the web-site of a large online retailer, items in the network being linked if they are frequently purchased by the same buyer. The network has more than 400,000 vertices and 2 million edges. We show that our algorithm can extract meaningful communities from this network, revealing large-scale patterns present in the purchasing habits of customers.
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            Modeling the World from Internet Photo Collections

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              Analysis of Edge-Detection Techniques for Crack Identification in Bridges

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                Author and article information

                Journal
                Computer-Aided Civil and Infrastructure Engineering
                Computer-Aided Civil and Infrastructure Engineering
                Wiley-Blackwell
                10939687
                October 2015
                October 2015
                : 30
                : 10
                : 759-770
                Article
                10.1111/mice.12141
                2ee81490-f481-4ab4-bdf9-13913a3e453b
                © 2015

                http://doi.wiley.com/10.1002/tdm_license_1.1

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