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Modeling the Selectivity of the Cod-end of a Trawl Using Chaotic Fish Behavior and Neural Networks
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  • Modeling the Selectivity of the Cod-end of a Trawl Using Chaotic Fish Behavior and Neural Networks
  • Modeling the Selectivity of the Cod-end of a Trawl Using Chaotic Fish Behavior and Neural Networks
저자명
Kim. Yong-Hae,Wardle. Clement S.
간행물명
Journal of fisheries science and technology
권/호정보
2008년|11권 1호|pp.61-69 (9 pages)
발행정보
한국수산과학회
파일정보
정기간행물|ENG|
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

Using empirical data of fish performance and physiological limits as well as physical stimuli and environmental data, a cod-end selectivity model based on a chaotic behavior model using the psycho-hydraulic wheel and neural-network approach was established to predict fish escape or herding responses in trawl and cod-end designs. Fish responses in the cod-end were categorized as escape or herding reactions based on their relative positions and reactions to the net wall. Fish movements were regulated by three factors: escape time, a visual looming effect, and an index of body girth-mesh size. The model was applied to haddock in a North Sea bottom trawl including frequencies of movement components, swimming speed, angular velocity, distance to net wall, and the caught-fish ratio; simulation results were similar to field observations. The ratio of retained fish in the cod-end was limited to 37-95% by optomotor coefficient values of 0.3-1.0 and to 13-67% by looming coefficient values of 0.1-1.0. The selectivity curves generated by this model were sensitive to changes in mesh size, towing speed, mesh type, and mesh shape.