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Effective Parallelization Method for Object Recognition in 2D Sonar Images Based on Task Partitioning

机译:基于任务分区的2D Sonar图像对象识别的有效并行化方法

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摘要

Techniques for analyzing and avoiding hazardous objects and situations on the seabed are being developed to ensure the safety of ships and submersibles from various hazards. Improvements in accuracy and real-time response are critical for underwater object recognition, which rely on underwater sonar detection to remove noises and analyze the data. Therefore, parallel processing is being introduced for real-time processing of two-dimensional (2D) underwater sonar detector images for seabed monitoring. However, this requires optimized parallel processing between the modules for image processing and the data processing of a vast amount of data. This study proposes an effective parallel processing method, called Task Partitioning, based on central and graphical processing units for monitoring and identifying underwater objects in real time based on 2D-imaging sonar. The practicality of the proposed method is evaluated experimentally by comparing it to the sequential processing method. The experimental results show that the Task Partitioning method significantly improves the processing time for sonar images because it reduces the average execution time to 1% and 5% of the sequential processing method and general parallelization, respectively.
机译:正在开发用于分析和避免危险物体的技术和海底上的情况,以确保船舶和潜艇的安全性来自各种危险。准确性和实时响应的改进对于水下对象识别至关重要,依赖于水下声纳检测以去除噪声并分析数据。因此,正在引入并行处理用于对海底监测的二维(2D)水下声纳检测器图像的实时处理。然而,这需要在模块之间进行优化的并行处理,用于图像处理和大量数据的数据处理。本研究提出了一种基于中央和图形处理单元的有效并行处理方法,称为任务划分,用于基于2D成像声纳实时监视和识别水下对象。通过将其与顺序处理方法进行了实验评估所提出的方法的实用性。实验结果表明,任务分区方法显着提高了声纳图像的处理时间,因为它分别将平均执行时间降低到顺序处理方法的平均执行时间和5%和一般并行化。

著录项

  • 来源
    《Scientific programming》 |2019年第1期|8908950.1-8908950.9|共9页
  • 作者单位

    Kyungwoon Univ Dept Aeronaut & Software Engn Gumi South Korea;

    Gyeongsang Natl Univ Dept Aerosp & Software Engn Jinju South Korea;

    Agcy Def Dev Jinhae South Korea;

    Aviat Campus Korea Polytech Dept Aviat Control Syst Sacheon South Korea;

  • 收录信息 美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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