FU Chen’en, CHEN Qiong. Hierarchical Grid Division to Realize Cluster and Scatter Visualization of Massive Map Markers[J]. Computer Engineering and Applications, 2023, 59(5): 245-251.
[1] 陈为,沈则潜,陶煜波,等.数据可视化[M].2版.北京:电子工业出版社,2019:243-244.
CHEN W,SHEN Z Q,TAO Y B,et al.Data visualization[M].
2nd ed.Beijing:Publishing House of Electronics Industry,2019:243-244.
[2] 李恒,沈华伟,黄蔚,等.地理社会网络数据可视化分析研究综述[J].中文信息学报,2018,32(10):11-18.
LI H,SHEN H W,HUANG W,et al.A review on visuali-zation analysis of geographic social network data[J].Journal of Chinese Information Processing,2018,32(10):11-18.
[3] 田启明,王丽珍,尹群.基于网格距离的聚类算法的设计、实现和应用[J].计算机应用,2005,25(2):294-296.
TIAN Q M,WANG L Z,YIN Q.The design,implementation and application of clustering algorithm based on grid distance[J].Journal of Computer Applications,2005,25(2):294-296.
[4] 刘果.基于网格密度的海量空间点聚合显示算法[J].测绘与空间地理信息,2015,38(4):174-176.
LIU G.Mass spatial point aggregation display algorithm based on grid density[J].Geomatics & Spatial Information Technology,2015,38(4):174-176.
[5] 王飞,王国胤,李智星,等.一种基于网格的密度峰值聚类算法[J].小型微型计算机系统,2017,38(5):1034-1038.
WANG F,WANG G Y,LI Z X,et al.A density peak clustering algorithm based on grid[J].Journal of Chinese Computer Systems,2017,38(5):1034-1038.
[6] 王旺.基于地图的数据可视化系统的研究与实现[D].北京:北京邮电大学,2018.
WANG W.The research and implementation of data visualization system based on map[D].Beijing:Beijing University of Posts and Telecommunications,2018.
[7] 周爱武,于亚飞.K-means聚类算法的研究[J].计算机技术与发展,2011,21(2):62-65.
ZHOU A W,YU Y F.Research on K-means clustering algorithm[J].Computer Technology and Development,2011,21(2):62-65.
[8] 丁立国,熊伟,周斌.专题图空间点聚合可视化算法研究[J].地理空间信息,2017,15(5):6-10.
DING L G,XIONG W,ZHOU B.Research on spatial point clustering visualization algorithm of thematic maps[J].Geospatial Information,2017,15(5):6-10.
[9] 周经纬.矢量大数据高性能计算模型及关键技术研究[D].杭州:浙江大学,2016.
ZHOU J W.Research on big vector data’s high performance computing model and key technologies[D].Hangzhou:Zhejiang University,2016.
[10] 袁喆,文继荣,魏哲巍,等.大数据实时交互式分析[J].软件学报,2020,31(1):162-182.
YUAN Z,WEN J R,WEI Z W,et al.Real-time interactive analysis on big data[J].Journal of Software,2020,31(1):162-182.
[11] HABIBULLAYEVICH K G,CHEN X,SHIM H.Efficient filtering and clustering mechanism for Google maps[J].Journal of Advanced Management Science,2013,1(1):108-111.
[12] 中电海康集团有限公司.一种实时环境下利用网格实现大规模动态目标可视化方法:201410464466.7[P].
2014-12-10.
CETHIK Co.,Ltd.A large-scale dynamic object visuali-zation method using grid in real-time environment:201410464466.7[P].2014-12-10.
[13] KWON B C,VERMA J,HAAS P J,et al.Sampling for scalable visual analytics[J].IEEE Computer Graphics and Applications,2017,37(1):100-108.
[14] MOORE A W.An intoductory tutorial on kd-trees[D/OL].[2022-01-21].http://citeseerx.ist.psu.edu/viewdoc/download?doi=10.1.1.28.6468&rep=rep1&type=pdf.
[15] GARGANTINI I.An effective way to represent quadtrees[J].Communications of the ACM,1982,25(12):905-910.
[16] Wikipedia.Tile map service[EB/OL].[2022-01-21].https://en.wikipedia.org/w/index.php?title=Tile_Map_Service&
oldid=1060135541.
[17] Wikipedia.Web mercator projection[EB/OL].[2022-01-21].https://en.wikipedia.org/w/index.php?title=Web_Mercator_
projection&oldid=1064273007.
[18] OpenStreetMap Wiki.Slippy map tilenames[EB/OL].[2022-01?21].https://wiki.openstreetmap.org/w/index.php?title=Slippy_map_tilenames&oldid=2189832.
[19] GUTTMAN A.R-trees:a dynamic index structure for spatial searching[C]//Proceedings of the 1984 ACM SIGMOD International Conference on Management of Data,1984:47-57.
[20] 张标.基于拓扑地图模型的空间运算研究[D].西安:长安大学,2017.
ZHANG B.The study of spatial operation based on topological map model[D].Xi’an:Chang’an University,2017.
[21] Turf.js API[EB/OL].[2022-01-21].http://turfjs.org/docs/.
[22] Baidu Web API[EB/OL].[2022-01-21].https://lbsyun.baidu.com/index.php?title=webapi/district-search.
[23] HEWITT E,CARPENTER J.Cassandra:the definitive guide[M].[S.l.]:O’Reilly Media,Inc,2016:190-192.