CONTENT: A practical, scalable, high-performance multimedia database

被引:0
作者
Yapp, L [1 ]
Yamashita, C [1 ]
Zick, G [1 ]
机构
[1] UNIV WASHINGTON,DEPT ELECT ENGN,SEATTLE,WA 98195
来源
ACM DIGITAL LIBRARIES '97 | 1997年
关键词
D O I
暂无
中图分类号
G25 [图书馆学、图书馆事业]; G35 [情报学、情报工作];
学科分类号
1205 ; 120501 ;
摘要
This paper describes Content, a practical, scalable, and high performance text-indexed multimedia database system. The novelty of Content is in its approach of integrating high-volume storage, fast searching and browsing, easy multimedia acquisition, effective updates, scalability, extendibility, and an API based on HTTP. Content is also a low-cost solution for large multimedia databases that is available today. Standard Web-based browsers such as Netscape can query the Content server. The API is flexible so that different and unique Content clients on multiple platforms can be built to access multiple Content servers. The Content architecture permits any multimedia type to be stored. Text descriptions are used as indices for images and videos. Content includes an easy-to-use Windows-based acquisition station for acquiring images and video. Currently, Content is being used in a real library setting and contains more than 25,000 multimedia objects that span two different collections of valuable historical photographs. In terms of performance, Content can access a single image in a database of over one million images in less than a second.
引用
收藏
页码:185 / 192
页数:8
相关论文
共 50 条
  • [31] Scalable quantum detector tomography by high-performance computing
    Schapeler, Timon
    Schade, Robert
    Lass, Michael
    Plessl, Christian
    Bartley, Tim J.
    QUANTUM SCIENCE AND TECHNOLOGY, 2025, 10 (01):
  • [32] A scalable high-performance DMA architecture for DSP applications
    Comisky, D
    Agarwala, S
    Fuoco, C
    2000 IEEE INTERNATIONAL CONFERENCE ON COMPUTER DESIGN: VLSI IN COMPUTERS & PROCESSORS, PROCEEDINGS, 2000, : 414 - 419
  • [33] A SCALABLE HIGH-PERFORMANCE SWITCHED-CAPACITOR FILTER
    WANG, CK
    CASTELLO, R
    GRAY, PR
    IEEE TRANSACTIONS ON CIRCUITS AND SYSTEMS, 1986, 33 (02): : 167 - 174
  • [34] High-Performance Scalable Information Service for the ATLAS Experiment
    Kolos, S.
    Boutsioukis, G.
    Hauser, R.
    2012 18TH IEEE-NPSS REAL TIME CONFERENCE (RT), 2012,
  • [35] Scalable resource management for high-performance Web servers
    Hasegawa, G
    Terai, T
    Okamoto, T
    Murata, M
    INTERNATIONAL JOURNAL OF COMMUNICATION SYSTEMS, 2004, 17 (05) : 389 - 406
  • [36] WOMBAT: A Scalable and High-performance Astrophysical Magnetohydrodynamics Code
    Mendygral, P. J.
    Radcliffe, N.
    Kandalla, K.
    Porter, D.
    O'Neill, B. J.
    Nolting, C.
    Edmon, P.
    Donnert, J. M. F.
    Jones, T. W.
    ASTROPHYSICAL JOURNAL SUPPLEMENT SERIES, 2017, 228 (02)
  • [37] Ceph: A scalable, high-performance distributed file system
    Weil, Sage A.
    Brandt, Scott A.
    Miller, Ethan L.
    Long, Darrell D. E.
    Maltzahn, Carlos
    USENIX ASSOCIATION 7TH USENIX SYMPOSIUM ON OPERATING SYSTEMS DESIGN AND IMPLEMENTATION, 2006, : 307 - +
  • [38] Heart: a Scalable, High-performance ART for Persistent Memory
    Nie, Liangxu
    Zheng, Shengan
    Zhang, Bowen
    Xu, Jinyan
    Huang, Linpeng
    2023 IEEE 41ST INTERNATIONAL CONFERENCE ON COMPUTER DESIGN, ICCD, 2023, : 487 - 490
  • [39] A Scalable and Modular Architecture for High-Performance Packet Classification
    Ganegedara, Thilan
    Jiang, Weirong
    Prasanna, Viktor K.
    IEEE TRANSACTIONS ON PARALLEL AND DISTRIBUTED SYSTEMS, 2014, 25 (05) : 1135 - 1144
  • [40] Simple, scalable protocols for high-performance local networks
    Riesen, R
    Maccabe, AB
    LCN 2003: 28TH CONFERENCE ON LOCAL COMPUTER NETWORKS, PROCEEDINGS, 2003, : 640 - 641