278 | 0 | 1893 |
下载次数 | 被引频次 | 阅读次数 |
信息技术的发展为地图可视化提供了广阔空间,同时也带来丰富的创新地图成果。当前国内外大多从单一视角开展地图可视化研究,该文从全局视角基于文献计量法对2000—2023年国内外地图可视化研究进行综合分析,识别地图可视化的演变规律以及ICT(Information and Communications Technology)时代的研究热点。结果表明,近25年地图可视化研究经历了电子地图→网络地图→泛地图的演变过程,ICT时代泛地图、数字孪生地图、叙事地图、智能制图、全息地图等成为地图可视化领域新的研究热点。研究结果揭示了地图可视化研究的新趋势,能为进一步推动地图可视化研究和应用提供支持。
Abstract:The development of information technology has provided a broader space for map visualization, and it has also brought a wealth of innovative map results.At present, most of the research at home and abroad has carried out map visualization research from a single perspective.Therefore, from a global perspective, this paper comprehensively analyzes the research on map visualization at home and abroad from 2000 to 2023 based on bibliometric method, and identifies the evolution law of map visualization and the research hotspots in the information and communications technology(ICT) era.The results show that map visualization research has undergone a evolution process from electronic map → network map → pan-map since 2000.In the ICT era, pan-maps, digital twin maps, narrative maps, intelligent maps and holographic maps have become new research hotspots in the field of map visualization.This study reveals the new trend of map visualization research, and is expected to provide support for further promoting the research and application of map visualization.
[1] 郭仁忠,陈业滨,马丁,等.论ICT时代的泛地图表达[J].测绘学报,2022,51(7):1108-1113.
[2] 周志光,石晨,史林松,等.地理空间数据可视分析综述[J].计算机辅助设计与图形学学报,2018,30(5):747-763.
[3] 秦建新,张青年,王全科,等.地图可视化研究[J].地理研究,2000,19(1):15-21.
[4] 闫浩文,张黎明,杜萍,等.自媒体时代的地图:微地图[J].测绘科学技术学报,2016,33(5):520-523.
[5] 游雄,贾奋励,田江鹏,等.机器地图及其概念模型[J].地球信息科学学报,2024,26(1):25-34.
[6] 王家耀.地图学原理与方法[M].北京:科学出版社,2014.
[7] 郭仁忠,陈业滨,应申,等.三元空间下的泛地图可视化维度[J].武汉大学学报(信息科学版),2018,43(11):1603-1610.
[8] 信睿,艾廷华,何亚坤.Gosper地图的非空间层次数据隐喻表达与分析[J].测绘学报,2017,46(12):2006-2015.
[9] 高培超,刘钊,谢美慧,等.Cartogram属性地图:理论概述与研究展望[J].测绘与空间地理信息,2016,39(6):211-215.
[10] 王丽娜,江南,李响,等.Cartogram表示方法研究综述[J].计算机辅助设计与图形学学报,2017,29(3):393-405.
[11] TOBLER W R.Experiments in migration mapping by computer[J].The American Cartographer,1987,14(2):155-163.
[12] 龚成银,遆鹏,吴昊,等.道路地图示意性表达的可用性评估[J].测绘通报,2021(5):81-85.
[13] RAISE E J.Rectangular statistical cartograms of the world[J].Journal of Geography,1936,35:8-10.
[14] 吴明光,成梓铭.一种顾及视觉层次的电子地图自适应节能显示方法[J].测绘学报,2023,52(11):1983-1993.
[15] 苏世亮,王令琦,杜清运,等.隐喻地图的基本理论问题[J].地球信息科学学报,2024,26(1):72-84.
[16] 庞静,陈国雄,宋关福,等.增强现实地图研究与应用[J].测绘地理信息,2021,46(1):130-134.
[17] 方浩,宋章通,杨流,等.VR移动城市导航地图设计中的空间认知要素[J].武汉大学学报(信息科学版),2019,44(8):1124-1130.
[18] 阚越,章锦河,徐平,等.基于CiteSpace的旅游地图研究知识图谱分析[J].测绘与空间地理信息,2022,45(12):9-12.
[19] 武光莹,艾廷华,黄丽娜,等.文献计量的地图动态可视化进展分析[J].测绘科学,2021,46(3):153-162.
[20] 郭玉芳,邓国庆,马聪丽,等.国外地形图成果发展综述[J].测绘标准化,2014,30(1):7-11.
[21] 王富强,薛志伟,齐晓飞,等.室内地图研究综述[J].地矿测绘,2012,28(2):1-3.
[22] 陈建伟,黄翌,刘潇潇.地图美学研究综述[J].测绘与空间地理信息,2022,45(9):61-64.
[23] MA?EUL G,GUILLAUME T,IAN M.Missing the city for buildings?A critical review of pan-scalar map generalization and design in contemporary zoomable maps[J].International Journal of Cartography,2023,9(2):255-285.
[24] 陈维军.文献计量法与内容分析法的比较研究[J].情报科学,2001(8):884-886.
[25] 王家耀,武芳,闫浩文.大变化时代的地图学[J].测绘学报,2022,51(6):829-842.
[26] 郭仁忠,应申.论ICT时代的地图学复兴[J].测绘学报,2017,46(10):1274-1283.
[27] 李石标,杜清运,任福,等.移动端地图集微信小程序发布技术与应用[J].测绘地理信息,2023,48(4):141-145.
[28] 曾兴国,任福,杜清运,等.公众参与式地图制图服务的设计与实现[J].武汉大学学报(信息科学版),2013,38(8):950-953.
[29] 杜清运,虞昌彬,任福.利用嵌套金字塔模型进行瓦片地图数据组织[J].武汉大学学报(信息科学版),2011,36(5):564-567.
[30] 冯昶,杜清运,范晓宇,等.高精动态地图基础平台众源更新技术路线研究[J].测绘地理信息,2023,48(1):10-15.
[31] POPELKA S,HERMAN L,■EZNíK T,et al.User evaluation of map-based visual analytic tools[J].ISPRS International Journal of Geo-Information,2019,8(8):363.
[32] ■,?A?INKA ?,■.Visualization of environment-related information in augmented reality:analysis of user needs[C]//Advances in Cartography and GIScience:Selections from the International Cartographic Conference 2017.Berlin:Springer International Publishing,2017:283-292.
[33]KUBí?EK P,?A?INKA ?,■,et al.Cartographic design and usability of visual variables for linear features[J].The Cartographic Journal,2017,54(1):91-102.
[34] CHEN J F,ZHAI G J,CHEN G,et al.Unsupervised domain adaption for high-resolution coastal land cover mapping with category-space constrained adversarial network[J].Remote Sensing,2021,13(8):1493.
[35] LING F,ZHANG Y H,FOODY G M,et al.Learning-based superresolution land cover mapping[J].IEEE Transactions on Geoscience and Remote Sensing,2016,54(7):3794-3810.
[36] XU C J,ZHU G B,SHU J Q.A lightweight and robust lie group-convolutional neural networks joint representation for remote sensing scene classification[J].IEEE Transactions on Geoscience and Remote Sensing,2021,60:1-15.
[37] 童晓冲,贲进,张永生,等.全球六边形离散格网数据的三维可视化方法[J].测绘学报,2013,42(3):374-382.
[38] CHEN C,YANG B S,SONG S.Low cost and efficient 3D indoor mapping using multiple consumer RGB-D cameras[J].The International Archives of the Photogrammetry,Remote Sensing and Spatial Information Sciences,2016,41:169-174.
[39] LIANG J M,GONG J H,LIU J,et al.Generating orthorectified multi-perspective 2.5D maps to facilitate Web GIS-based visualization and exploitation of massive 3D city models[J].ISPRS International Journal of Geo-Information,2016,5(11):212.
[40] YU C B,REN F,DU Q Y,et al.Web map-based POI visualization for spatial decision support[J].Cartography and Geographic Information Science,2013,40(3):172-182.
[41] LI Z Q,GUAN X F,LI R,et al.4D-SAS:a distributed dynamic-data driven simulation and analysis system for massive spatial agent-based modeling[J].ISPRS International Journal of Geo-Information,2016,5(4):42.
[42] 薛腾飞,张景发.应用于地震应急的遥感自动制图实现[J].自然灾害学报,2017,26(3):19-27.
[43] LIAO H,DONG W H.An exploratory study investigating gender effects on using 3D maps for spatial orientation in wayfinding[J].ISPRS International Journal of Geo-Information,2017,6(3):60.
[44] FUSE T,NISHIKAWA S,FUKUNISHI Y.Verification of image based augmented reality for urban visualization[J].The International Archives of the Photogrammetry,Remote Sensing and Spatial Information Sciences,2012,39:183-188.
[45] SKILES M D,HOWARTH J T.From signs to minds:spatial information design and mental maps[J].The Cartographic Journal,2012,49(4):312-325.
[46] 谢永达.三维城市模型的构建及其在规划中的应用研究[D].武汉:武汉大学,2004.
[47] 周彬涵.基于感知数据的交通仿真研究[D].天津:天津大学,2024.
[48] 苏世亮,冯雨晴,王海银,等.自然资源地图集设计:主题内容与表达策略[J].测绘地理信息,2023,48(1):35-39.
[49] JANKOWSKI P,ANDRIENKO N,ANDRIENKO G.Map-centred exploratory approach to multiple criteria spatial decision making[J].International Journal of Geographical Information Science,2001,15(2):101-127.
[50] VAN OOSTEROM P,MEIJERS M.Vario-scale data structures supporting smooth zoom and progressive transfer of 2D and 3D data[J].International Journal of Geographical Information Science,2014,28(3):455-478.
[51] ZHANG L,ZHANG L Q,XU X.Occlusion-free visualization of important geographic features in 3D urban environments[J].ISPRS International Journal of Geo-Information,2016,5(8):138.
[52] CLARKE K C,JOHNSON J M,TRAINOR T.Contemporary American cartographic research:a review and prospective[J].Cartography and Geographic Information Science,2019,46(3):196-209.
[53] BUYUKSALIH I,BAYBURT S,BUYUKSALIH G,et al.3D modelling and visualization based on the unity game engine-advantages and challenges[J].ISPRS Annals of the Photogrammetry,Remote Sensing and Spatial Information Sciences,2017,4:161-166.
[54] PENG Q,LI Z L,CHEN J,et al.Complexity-based matching between image resolution and map scale for multiscale image-map generation[J].International Journal of Geographical Information Science,2021,35(10):1951-1974.
[55] XIE W Y,LEI J,YANG J,et al.Deep latent spectral representation learning-based hyperspectral band selection for target detection[J].IEEE Transactions on Geoscience and Remote Sensing,2019,58(3):2015-2026.
[56] 钟琳颖,沈婕,毛威,等.基于时空知识图谱的古城叙事地图设计与实现[J].遥感学报,2021,25(12):2421-2430.
[57] 余卓渊,闾国年,张夕宁,等.全息高精度导航地图:概念及理论模型[J].地球信息科学学报,2020,22(4):760-771.
[58] 郭仁忠,陈业滨,赵志刚,等.泛地图学理论研究框架[J].测绘地理信息,2021,46(1):9-15.
[59] 郭仁忠,陈业滨,赵志刚,等.ICT时代地图的科学概念及表达框架[J].武汉大学学报(信息科学版),2022,47(12):1978-1987.
[60] 董卫华,刘毅龙,黑巧松,等.泛地图空间认知理论与方法研究框架[J].武汉大学学报(信息科学版),2022,47(12):2007-2014.
[61] 遆鹏,侯晓彤,李志林,等.基于可视化维度的泛地图表达机制[J].武汉大学学报(信息科学版),2022,47(12):2015-2025.
[62] 曾兴国,刘建军,左维,等.泛地图理论下深空探测场景空间制图表达思考[J].武汉大学学报(信息科学版),2022,47(12):2123-2133.
[63] 韩德志,郭仁忠,陈业滨,等.基于可视化维度理论的泛地图知识推荐方法[J].地球信息科学学报,2024,26(1):110-120.
[64] 高嘉良,陆锋,彭澎,等.基于网络文本迁移学习的旅游知识图谱构建[J].武汉大学学报(信息科学版),2022,47(8):1191-1200.
[65] 王家耀.关于信息时代地图学的再思考[J].测绘科学技术学报,2013,30(4):329-333.
[66] 任福,翁杰,王昭,等.关于智能地图制图的几点思考[J].武汉大学学报(信息科学版),2022,47(12):2064-2068.
[67] 彭楚骄,李连营,郭邦祁,等.使用知识图谱推荐专题地图可视化方法[J].测绘科学,2022,47(6):188-194.
[68] MARKOVA S V,ARTEMENKO I V,GUZUEVA E R.Use of artificial intelligence for automated map updating[C]//Journal of Physics:Conference Series.IOP Publishing,2021,2032(1):012046.
[69] KANG Y H,GAO S,ROTH R E.Transferring multiscale map styles using generative adversarial networks[J].International Journal of Cartography,2019,5(2-3):115-141.
[70] ZHANG Y F,WEI C,WU S Y,et al.GeoGPT:understanding and processing geospatial tasks through an autonomous GPT[J].Computer Science,Geography,2023.DOI:10.48550/arXiv.2307.07930.
[71] KANG Y H,GAO S Z,ROTH R.A review and synthesis of recent geoai research for cartography:methods,applications,and ethics[C]//Proceedings of AutoCarto.2022:2-4.
[72] 吴明光,孙彦杰,闾国年.地图风格迁移:概念、综述与展望[J].武汉大学学报(信息科学版),2022,47(12):2069-2084.
[73] KRAAK M J,FABRIKANT S I.Of maps,cartography and the geography of the International Cartographic Association[J].International Journal of Cartography,2017,3(s1):9-31.
[74] 钟耳顺.深度地图:论地图学与神经科学的结合[J].武汉大学学报(信息科学版),2022,47(12):1988-2002.
[75] 李德仁.数字孪生城市智慧城市建设的新高度[J].中国勘察设计,2020(10):13-14.
[76] 赵婧文,顾建祥,吴杭彬.面向数字孪生城市的城市地理信息更新[J].测绘地理信息,2023,48(2):75-79.
[77] 朱乔利,何成威,刘亦超.面向Cesium的数字孪生场景多源数据融合可视化研究[J].科学技术创新,2023(23):43-46.
[78] 张继贤,刘飞.视觉SLAM环境感知技术现状与智能化测绘应用展望[J].测绘学报,2023,52(10):1617-1630.
[79] 顾建祥,杨必胜,董震,等.面向数字孪生城市的智能化全息测绘[J].测绘通报,2020(6):134-140.
[80] 苏世亮,王令琦,杜清运,等.叙事地图的基本理论问题:逻辑理据、概念界定、表征机制与研究议题[J].测绘学报,2023,52(12):2178-2196.
[81] 王双.时空叙事可视化理论与方法研究[J].测绘学报,2019,48(3):401.
[82] 马越.面向叙事的地图可视化方法研究[D].阜新:辽宁工程技术大学,2015.
[83] 钟琳颖.面向融媒体的古城叙事地图设计与实现[D].南京:南京师范大学,2021.
[84] 吴雪儿.基于动画的地图叙事设计策略[D].上海:华东师范大学,2021.
[85] 苏世亮,张江玥,杜清运,等.历史文化风貌区叙事地图设计:可读性框架与表达策略[J].测绘科学,2021,46(10):194-201.
[86] 钟琳颖,沈婕,毛威,等.基于时空知识图谱的古城叙事地图设计与实现[J].遥感学报,2021,25(12):2421-2430.
[87] NORAMBUENA B K,MITRA T.Narrative maps:an algorithmic approach to represent and extract information narratives[J].Proceedings of the ACM on Human-Computer Interaction,2021,4:1-33.
[88] 周成虎.全息地图时代已经来临:地图功能的历史演变[J].测绘科学,2014,39(7):3-8.
[89] 齐清文,姜莉莉,张岸,等.全息地图建模与多重表达[J].测绘科学,2018,43(7):7-14.
[90] 周成虎.全空间地理信息系统展望[J].地理科学进展,2015,34(2):129-131.
[91] 闾国年,俞肇元,袁林旺,等.地图学的未来是场景学吗[J].地球信息科学学报,2018,20(1):1-6.
[92] 闾国年,袁林旺,俞肇元.地理学视角下测绘地理信息再透视[J].测绘学报,2017,46(10):1549-1556.
[93] 叶辉,史瑞芝,李胜辉.全息地图的空间认知研究[J].测绘与空间地理信息,2017,40(12):93-95.
[94] 侯溯源,刘平芝,杨云,等.地理信息全息显示技术探讨[J].测绘与空间地理信息,2014,37(5):15-18.
[95] 朱欣焰,杨龙龙,呙维,等.面向全息位置地图的室内空间本体建模[J].地理信息世界,2015,22(2):1-7.
[96] 陈毓芬.电子地图的空间认知研究[J].地理科学进展,2001(S1):63-68.
基本信息:
DOI:
中图分类号:P28;G353.1
引用信息:
[1]柯文清 ,陈业滨 ,赵志刚 等.基于文献计量的新世纪地图可视化研究演变和热点分析[J].地理与地理信息科学,2025,41(01):15-23.
基金信息:
国家自然科学基金面上项目(42171265);国家自然科学基金项目(42301502); 广东省基础与应用基础研究基金项目(2022A1515012120)