...
首页> 外文期刊>ICES Journal of Marine Science >Increasing the accessibility of acoustic data through global access and imagery
【24h】

Increasing the accessibility of acoustic data through global access and imagery

机译:通过全局访问和图像增加声学数据的可访问性

获取原文
获取原文并翻译 | 示例
           

摘要

The National Oceanographic and Atmospheric Administration (NOAA) uses water column sonar data to assess physical and biological characteristics from the ocean surface to the seabed. Acoustic surveys produce large volumes of data that can deliver valuable information beyond their original collection purpose if the data are properly managed, discoverable, and accessible to the public. NOAA's National Centers for Environmental Information, in partnership with NOAA's National Marine Fisheries Service and the University of Colorado, have created a national archive for water column sonar data to help achieve these goals. Through these efforts, over 21 TB of sonar data are now publicly available. Rawsonar files are difficult to interpret due to their size, complexity, and proprietary format. In order for users to understand the quality and composition of large volumes of archived data more easily, several visualization products were explored. Three processing methods were applied to multifrequency single-beam data (Simrad EK60) collected off the US northwest coast between 2007 and 2013. One method illustrates these complex data in a single image using a novel colour scale [multifrequency single-beam imaging (MFSBI)], another examines the nautical area scattering coefficients between two frequencies (Delta NASC), and the third indices the data into acoustic classifications [multifrequency indicator (MFI)]. The ability to apply the algorithms efficiently to multiyear datasets was explored. MFSBI proved effective at conveying the composition of the data and was easily adaptable to automated processing. Delta NASC, which required manual seabed corrections, illustrated a generalized pattern for changes in the water column across the shelf. MFI provided an empirically based statistical approach but will require more effort in the near term to evaluate and assess the accuracy and precision of each classification. Overall, spatio-temporal patterns of the acoustic backscatter identified large interannual variations in composition with the continental shelf break often playing a key role in attracting biological assemblages.
机译:国家海洋和大气管理局(NOAA)使用水柱声纳数据评估从海表到海底的物理和生物特征。如果对数据进行了适当的管理,发现和公众访问,声学调查会产生大量数据,这些数据可以提供超出其原始收集目的的有价值信息。 NOAA的国家环境信息中心与NOAA的国家海洋渔业局和科罗拉多大学合作,为水柱声纳数据创建了国家档案馆,以帮助实现这些目标。通过这些努力,现已公开提供超过21 TB的声纳数据。由于其大小,复杂性和专有格式,Rawsonar文件难以解释。为了使用户更轻松地了解大量归档数据的质量和组成,我们探索了几种可视化产品。三种处理方法应用于2007年至2013年间从美国西北海岸采集的多频单光束数据(Simrad EK60)。一种方法使用新颖的色标[多频单光束成像(MFSBI)”在单个图像中说明了这些复杂数据。 ],另一项检查了两个频率之间的航海区域散射系数(Delta NASC),第三个将数据索引到声学分类中[多频指示器(MFI)]。探索了将算法有效应用于多年数据集的能力。 MFSBI被证明可以有效地传达数据的组成,并且很容易适应自动化处理。要求手动进行海底校正的达美航空航天公司(NASC)说明了整个架子上水柱变化的一般模式。 MFI提供了一种基于经验的统计方法,但在短期内需要更多的精力来评估和评估每个分类的准确性和精确性。总体而言,声学后向散射的时空格局表明,随着大陆架的破裂,成分的年际变化很大,通常在吸引生物集合体中起关键作用。

著录项

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