A graph-based approach for representing addresses in geocoding
暂无分享,去创建一个
B. He | R. Guo | Ding Ma | Chen Zhang
[1] Sizhe Wang,et al. Performance benchmark on semantic web repositories for spatially explicit knowledge graph applications , 2022, Comput. Environ. Urban Syst..
[2] Guangming Ling,et al. REBDT: A regular expression boundary-based decision tree model for Chinese logistics address segmentation , 2022, Applied Intelligence.
[3] Kai-Florian Richter,et al. HiVG: A hierarchical indoor visibility-based graph for navigation guidance in multi-storey buildings , 2022, Comput. Environ. Urban Syst..
[4] Zhe Zhang,et al. A probabilistic ensemble approach for knowledge graph embedding , 2022, Neurocomputing.
[5] Gift Dumedah,et al. Address points of landmarks and paratransit services as a credible reference database for geocoding , 2021, Trans. GIS.
[6] G. Sohn,et al. DESIGN AND EVALUATION OF A BIM-GIS INTEGRATED INFORMATION MODEL USING RDF GRAPH DATABASE , 2021, ISPRS Annals of the Photogrammetry, Remote Sensing and Spatial Information Sciences.
[7] Nikola Markovic,et al. Inferencing hourly traffic volume using data-driven machine learning and graph theory , 2021, Comput. Environ. Urban Syst..
[8] Thomas H. Kolbe,et al. A MULTI-PERSPECTIVE APPROACH TO INTERPRETING SPATIO-SEMANTIC CHANGES OF LARGE 3D CITY MODELS IN CITYGML USING A GRAPH DATABASE , 2020 .
[9] Zhenhong Du,et al. GSAM: A deep neural network model for extracting computational representations of Chinese addresses fused with geospatial feature , 2020, Comput. Environ. Urban Syst..
[10] Chonghui Guo,et al. Review of Chinese Word Segmentation Studies , 2020 .
[11] Zhiyuan Liu,et al. More Data, More Relations, More Context and More Openness: A Review and Outlook for Relation Extraction , 2020, AACL.
[12] Qingyun Du,et al. A deep learning architecture for semantic address matching , 2019, Int. J. Geogr. Inf. Sci..
[13] Weiwei Song,et al. A hierarchical indexing strategy for optimizing Apache Spark with HDFS to efficiently query big geospatial raster data , 2018, Int. J. Digit. Earth.
[14] Quynh C. Nguyen,et al. Why do we need a national address point database to improve wildfire public safety in the U.S.? , 2019, International Journal of Disaster Risk Reduction.
[15] Yuhan Sun,et al. A spatially-pruned vertex expansion operator in the Neo4j graph database system , 2019, GeoInformatica.
[16] Yu Liu,et al. A fuzzy formal concept analysis-based approach to uncovering spatial hierarchies among vague places extracted from user-generated data , 2019, Int. J. Geogr. Inf. Sci..
[17] Hao Chen,et al. Georeferencing places from collective human descriptions using place graphs , 2018, J. Spatial Inf. Sci..
[18] Dilek Küçük Matcı,et al. Address standardization using the natural language process for improving geocoding results , 2018, Comput. Environ. Urban Syst..
[19] Hao Chen,et al. A Graph Database Model for Knowledge Extracted from Place Descriptions , 2018, ISPRS Int. J. Geo Inf..
[20] Jianya Gong,et al. Big enterprise registration data imputation: Supporting spatiotemporal analysis of industries in China , 2018, Comput. Environ. Urban Syst..
[21] Yu Zhang,et al. A hybrid method for Chinese address segmentation , 2018, Int. J. Geogr. Inf. Sci..
[22] T. Cova,et al. Using reverse geocoding to identify prominent wildfire evacuation trigger points , 2017 .
[23] Rafal A. Angryk,et al. Mining spatiotemporal co-occurrence patterns in non-relational databases , 2016, GeoInformatica.
[24] Jure Leskovec,et al. node2vec: Scalable Feature Learning for Networks , 2016, KDD.
[25] Qingyun Du,et al. Using an Optimized Chinese Address Matching Method to Develop a Geocoding Service: A Case Study of Shenzhen, China , 2016, ISPRS Int. J. Geo Inf..
[26] Stephan Winter,et al. From descriptions to depictions: A dynamic sketch map drawing strategy , 2016, Spatial Cogn. Comput..
[27] Mingzhe Wang,et al. LINE: Large-scale Information Network Embedding , 2015, WWW.
[28] Du Qingyun,et al. A New Method of Chinese Address Extraction Based on Address Tree Model , 2015 .
[29] Chongjun Yang,et al. An address regional tessellation method for spatial subdivision and geocoding in digital earth system , 2015, Int. J. Digit. Earth.
[30] Marie Lynn Miranda,et al. Geocoding Large Population‐level Administrative Datasets at Highly Resolved Spatial Scales , 2014, Trans. GIS.
[31] Steven Skiena,et al. DeepWalk: online learning of social representations , 2014, KDD.
[32] Stephan Winter,et al. Locating place names from place descriptions , 2013, Int. J. Geogr. Inf. Sci..
[33] Christopher N. Eichelberger,et al. Spatio-temporal indexing in non-relational distributed databases , 2013, 2013 IEEE International Conference on Big Data.
[34] Martin Tomko,et al. From Descriptions to Depictions: A Conceptual Framework , 2013, COSIT.
[35] Xiao Qin,et al. Intelligent geocoding system to locate traffic crashes. , 2013, Accident; analysis and prevention.
[36] Martin Hammitzsch,et al. Addressing administrative units in international tsunami early warning systems: shortcomings in international geocode standards , 2012, Int. J. Digit. Earth.
[37] Mário J. Silva,et al. Toponym Disambiguation Using Ontology-Based Semantic Similarity , 2012, PROPOR.
[38] Ken Barker,et al. Extraction of geospatial information on the Web for GIS applications , 2011, IEEE 10th International Conference on Cognitive Informatics and Cognitive Computing (ICCI-CC'11).
[39] S. Coetzee,et al. TOWARDS GOOD PRINCIPLES FOR THE DESIGN OF A NATIONAL ADDRESSING SCHEME , 2011 .
[40] Davide Buscaldi,et al. Approaches to disambiguating toponyms , 2011, SIGSPACIAL.
[41] Krzysztof Janowicz,et al. The semantics of similarity in geographic information retrieval , 2011, J. Spatial Inf. Sci..
[42] Hassan A. Karimi,et al. Comparative evaluation and analysis of online geocoding services , 2010, Int. J. Geogr. Inf. Sci..
[43] Judith Bishop,et al. Address databases for national SDI: Comparing the novel data grid approach to data harvesting and federated databases , 2009, Int. J. Geogr. Inf. Sci..
[44] Zhong Su,et al. Address standardization with latent semantic association , 2009, KDD.
[45] Jiyeong Lee,et al. GIS-Based Geocoding Methods for Area-Based Addresses and 3D Addresses in Urban Areas , 2009 .
[46] Craig A. Knoblock,et al. An effective and efficient approach for manually improving geocoded data. , 2008, International journal of health geographics.
[47] Krzysztof Janowicz,et al. The role of ontology in improving gazetteer interaction , 2008, Int. J. Geogr. Inf. Sci..
[48] Paul A. Zandbergen,et al. A comparison of address point, parcel and street geocoding techniques , 2008, Comput. Environ. Urban Syst..
[49] Paolo Rosso,et al. A conceptual density‐based approach for the disambiguation of toponyms , 2008, Int. J. Geogr. Inf. Sci..
[50] Marco Conedera,et al. Using toponymy to reconstruct past land use: a case study of ‘brüsáda’ (burn) in southern Switzerland , 2007 .
[51] Frederico T. Fonseca,et al. Assessing the Certainty of Locations Produced by an Address Geocoding System , 2007, GeoInformatica.
[52] Craig A. Knoblock,et al. From Text to Geographic Coordinates: The Current State of Geocoding , 2007 .
[53] Gerard Rushton,et al. Geocoding in cancer research: a review. , 2006, American journal of preventive medicine.
[54] J. Ratcliffe. Geocoding crime and a first estimate of a minimum acceptable hit rate , 2004, Int. J. Geogr. Inf. Sci..
[55] Erich Wilmersdorf,et al. Geocoded information incorporated into urban online services - the approach of the City of Vienna , 2003, Comput. Environ. Urban Syst..
[56] Harith Alani,et al. Geographical Information Retrieval with Ontologies of Place , 2001, COSIT.
[57] Jerry H. Ratcliffe,et al. On the accuracy of TIGER-type geocoded address data in relation to cadastral and census areal units , 2001, Int. J. Geogr. Inf. Sci..
[58] N. Levine,et al. The location of motor vehicle crashes in Honolulu: a methodology for geocoding intersections , 1998 .
[59] William J. Drummond,et al. Address Matching: GIS Technology for Mapping Human Activity Patterns , 1995 .
[60] W. Tobler. A Computer Movie Simulating Urban Growth in the Detroit Region , 1970 .
[61] Bernard Harris,et al. Graph theory and its applications , 1970 .
[62] Vladimir I. Levenshtein,et al. Binary codes capable of correcting deletions, insertions, and reversals , 1965 .