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Benthic Fish Behavior Characterization with a Mechanically Scanned Imaging Sonar

机译:底栖鱼行为表征用机械扫描的成像声纳

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A point stationary, acoustic-based surveying system was proposed to fulfill the necessities of benthic fish behavior assessment. The surveying system can be split into two major and inter-dependent techniques, i.e., acoustic image acquisition and image processing. The first part comprises a high-frequency, mechanically scanned imaging sonar (MSIS) with bottom-fixed, side-looking working configuration. Major modules of the proposed image processing procedure include: stationary objects subtraction, region and textural feature extraction, unsupervised classification, fish target identification and quantification. For the specific case study conducted in a deep water fishpond, it is evident that both individual and school fish could be discriminated by image frames collected at a randomly selected point with scanning range setting at 5 m and frame rate at 75 second. Based on spatial and temporal analyses on position and area of the discriminated fish targets, it was concluded that fish movement pattern in the scanned area followed two distinctive corridors with significant different passage rate, i.e., a discrete, periodic and high passage rate mode in Corridor#1 and a continuous, steady and low passage rate mode in Corridor#2. Environmental features, such as bank slope, substrate mound and float raft represented specific meeting points for dynamic aggregations and schooling. Fish tended to converge into prominent schools subsequent to interactions with these features. The proposed system represented a practical and cost effective tool in acquiring image frames with sufficient spatial and temporal resolution for the characterization of fish behavior.
机译:提出了一种点静止,基于声学的测量系统,以满足底栖鱼行为评估的必要性。测量系统可以分为两个主要和依赖性技术,即声学图像获取和图像处理。第一部分包括具有底部固定,侧面工作配置的高频机械扫描的成像声纳(MSIS)。所提出的图像处理程序的主要模块包括:固定物体减法,区域和纹理特征提取,无监督的分类,鱼类目标识别和量化。对于在深水鱼塘中进行的具体情况研究,显然可以通过在随机选择的点处收集的图像帧来区分个人和学校鱼类,以5米处的扫描范围设定为75秒。基于空间和时间分析在鉴别的鱼类目标的位置和面积上,得出结论,扫描区域中的鱼类运动模式跟随两个具有显着不同通道率的独特走廊,即走廊中的离散,周期性和高通道率模式#1和走廊#2中的连续,稳定,低通路速率模式。环境特征,如银行坡,衬底和浮动筏代表了动态聚集和学校教育的具体会议点。鱼往往会收敛到与这些功能相互作用之后的着名学校。所提出的系统代表了采集具有足够空间和时间分辨率的实用且具有成本效益的工具,以表征鱼行为。

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