...
首页> 外文期刊>Journal of marine systems: journal of the European Association of Marine Sciences and Techniques >Acoustically focused adaptive sampling and on-board routing for marine rapid environmental assessment
【24h】

Acoustically focused adaptive sampling and on-board routing for marine rapid environmental assessment

机译:聚焦于声学的自适应采样和船上航线,用于海洋快速环境评估

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Variabilities in the coastal ocean environment span a wide range of spatial and temporal scales. From an acoustic viewpoint, the limited oceanographic measurements and today's ocean computational capabilities are not always able to provide oceanic-acoustic predictions in high-resolution and with enough accuracy. Adaptive Rapid Environmental Assessment (AREA) is an adaptive sampling concept being developed in connection with the emergence of Autonomous Ocean Sampling Networks and interdisciplinary ensemble predictions and adaptive sampling via Error Subspace Statistical Estimation (ESSE). By adaptively and optimally deploying in situ sampling resources and assimilating these data into coupled nested ocean and acoustic models, AREA can dramatically improve the estimation of ocean fields that matter for acoustic predictions. These concepts are outlined and a methodology is developed and illustrated based on the Focused Acoustic Forecasting-05 (FAF05) exercise in the northern Tyrrhenian sea. The methodology first couples the data-assimilative environmental and acoustic propagation ensemble modeling. An adaptive sampling plan is then predicted, using the uncertainty of the acoustic predictions as input to an optimization scheme which finds the parameter values of autonomous sampling behaviors that optimally reduce this forecast of the acoustic uncertainty. To compute this reduction, the expected statistics of unknown data to be sampled by different candidate sampling behaviors are assimilated. The predicted-optimal parameter values are then fed to the sampling vehicles. A second adaptation of these parameters is ultimately carried out in the water by the sampling vehicles using onboard routing, in response to the real ocean data that they acquire. The autonomy architecture and algorithms used to implement this methodology are also described. Results from a number of real-time AREA simulations using data collected during the Focused Acoustic Forecasting (FAF05) exercise are presented and discussed for the case of a single Autonomous Underwater Vehicle (AUV). For FAF05, the main AREA–ESSE application was the optimal tracking of the ocean thermocline based on ocean-acoustic ensemble prediction, adaptive sampling plans for vertical Yo-Yo behaviors and subsequent onboard Yo-Yo routing.
机译:沿海海洋环境的变化跨越了广泛的时空尺度。从声学的角度来看,有限的海洋学测量和当今的海洋计算能力并不总是能够以高分辨率和足够的精度提供海洋声预测。自适应快速环境评估(AREA)是一种与自主海洋采样网络,跨学科集成预测和通过误差子空间统计估计(ESSE)进行自适应采样有关的自适应采样概念。通过自适应和最佳地部署原位采样资源并将这些数据吸收到耦合的嵌套海洋和声学模型中,AREA可以显着改善对声学预测至关重要的海洋领域的估计。概述了这些概念,并根据第勒尼安海北部的“聚焦声波预测-05(FAF05)”演练开发并说明了一种方法。该方法首先将数据同化的环境和声学传播集成模型耦合在一起。然后,使用声学预测的不确定性作为优化方案的输入,对自适应采样计划进行预测,该优化方案可找到自主采样行为的参数值,从而最佳地降低声学不确定性的预测。为了计算此减少量,将对要通过不同候选采样行为采样的未知数据的预期统计量进行同化。然后将预测的最佳参数值输入到采样车。这些参数的第二次调整最终是由采样车辆根据其采集的真实海洋数据,使用船上路线在水中进行的。还描述了用于实现此方法的自治体系结构和算法。针对单个自主水下航行器(AUV)的情况,提出并讨论了使用聚焦声学预测(FAF05)练习期间收集的数据进行的实时AREA模拟得出的结果。对于FAF05,主要的AREA–ESSE应用是基于海洋声系集成预测,垂直Yo-Yo行为的自适应采样计划以及随后的机载Yo-Yo路线对海洋温度跃层的最佳跟踪。

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