...
首页> 外文期刊>Pure and Applied Geophysics >Operational Processing of Hydroacoustics at the Prototype International Data Center
【24h】

Operational Processing of Hydroacoustics at the Prototype International Data Center

机译:原型国际数据中心的水声操作处理

获取原文
获取原文并翻译 | 示例

摘要

— The Prototype International Data Center (PIDC) has designed and implemented a system to process data from the International Monitoring System's hydroacoustic network. The automatic system detects and measures various signal characteristics that are then used to classify the signal into one of three categories. The detected signals are combined with the seismic and infrasonic detections to automatically form event hypotheses. The automatic results are reviewed by human analysts to form the Reviewed Event Bulletin (REB). Continuous processing of hydroacoustic data has been in place since May 1997 and during that time a large database of hydroacoustic signals has been accumulated. For a two-year period, the REB contains 13,582 T phases that are associated to 8,437 events. This is roughly 25% of REB events after taking station downtime into account. Predicted travel times used in locations are based on the arrival time of the peak a mplitude mode calculated from a normal mode propagation model. Global sound velocity and bathymetry databases are used to obtain reliable 2-D, seasonally dependent, travel-time tables for each hydroacoustic station in the PIDC. A limited number of ground-truth observations indicate that the predicted travel times are good to within 5 seconds for paths extending to over 7,000 km – corresponding to a relative error of less than 0.1%. The ground truth indicates that the random errors in measuring arrival times for impulsive signals are between 1 and 6 seconds. This paper describes and evaluates the automatic hydroacoustic processing compared to the analyst reviewed results. In addition, special studies help characterize the overall performance of the hydroacoustic network.
机译:—原型国际数据中心(PIDC)设计并实施了一个系统,用于处理来自国际监测系统水声网络的数据。自动系统检测并测量各种信号特征,然后将其用于将信号分类为三个类别之一。检测到的信号与地震和次声检测相结合,以自动形成事件假设。自动分析结果将由人工分析人员进行审核,以形成“已审核事件公告”(REB)。自1997年5月以来,已经对水声数据进行了连续处理,在此期间,已经积累了一个庞大的水声信号数据库。在两年的时间内,REB包含13582个T阶段,与8437个事件相关。考虑到站点停机后,这大约占REB事件的25%。在位置中使用的预计行进时间是基于峰的到达时间,该峰是从正常模式传播模型计算出的振幅模式。全球声速和测深数据库用于为PIDC中的每个水声台站获取可靠的二维,随季节变化的行进时间表。有限的地面观测结果表明,对于延伸超过7,000 km的路径,预计行驶时间在5秒钟之内良好–相对误差小于0.1%。基本事实表明,在测量脉冲信号到达时间时的随机误差在1到6秒之间。本文介绍并评估了自动水声处理方法,并与分析师的审查结果进行了比较。此外,特殊研究有助于表征水声网络的整体性能。

著录项

  • 来源
    《Pure and Applied Geophysics》 |2001年第3期|425-456|共32页
  • 作者单位

    SAIC – Monitoring Systems Operations 10260 Campus Point Dr. San Diego CA 92121 USA.;

    SAIC – Monitoring Systems Operations 10260 Campus Point Dr. San Diego CA 92121 USA.;

    SAIC – Ocean Sciences Group 1710 Goodridge Dr. McLean VA 22102 USA.;

    SAIC – Monitoring Systems Operations 10260 Campus Point Dr. San Diego CA 92121 USA.;

    SAIC – Center for Monitoring Research 1300 N. 17th Street Suite 1450 Arlington VA 22209 USA.;

    SAIC – Monitoring Systems Operations 10260 Campus Point Dr. San Diego CA 92121 USA.;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Key words: CTBT verification; underwater acoustics; International Data Center.;

    机译:关键词:CTBT验证;水下声学国际数据中心。;

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号