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Application of machine vision systems in aquaculture with emphasis on fish: state-of-the-art and key issues

机译:机床视觉系统在水产养殖中的应用重点鱼:最先进的和关键问题

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摘要

Demands of aquatic products are increasing dramatically during past decades. Also quality assurance has gradually received more attention by both producers and consumers. Thus, fish producers are exploring all possible approaches for improving the productivity and profitability. Monitoring of fish state and behaviour during cultivation may help to improve profitability for producers and also reduce the threat of severe loss because of disease and stress incidents. It is necessary to evaluate and measure quality of fish products in accurate, fast and objective way for meeting the different demands of the fish-processing industry after harvesting. Traditional methods are usually time-consuming, expensive, laborious and invasive. Using rapid, inexpensive and noninvasive methods is therefore important and desirable. Optical sensors and machine vision system provide the possibility of developing faster, cheaper and noninvasive methods for insitu and after harvesting monitoring of quality in aquaculture. This review describes the most recent technologies and the suitability of different optical sensors for the fish farming management and also assessment, measurement and prediction of fish products quality. Two major areas of optical sensors applications in aquaculture are discussed in this review: (i) preharvesting and during cultivation; and (ii) post-harvesting. Finally, accuracy and uncertainty of optical sensors applications in aquaculture are discussed. This review showed that MVSs and optical sensors have found real-world application based on tremendous possibility offered by digital camera development and increasing the speed of computer-based processing; however, still new algorithms, methods and re-engineered sensors need to be developed to meet real-world requirements.
机译:在过去的几十年中,水产品的需求正在急剧增加。生产者和消费者也逐渐得到了更多关注的质量保证。因此,鱼类生产者正在探索提高生产力和盈利能力的所有可能的方法。在培养过程中监测鱼类状态和行为可能有助于提高生产者的盈利能力,并因疾病和压力事故而减少严重损失的威胁。有必要以准确,快捷客观的方式评估和测量鱼类产品的质量,以满足收获后鱼类加工行业的不同需求。传统方法通常是耗时,昂贵,艰苦和侵入性的。因此,使用快速,廉价和无创方法是重要的和理想的。光学传感器和机器视觉系统提供了开发速度的速度,更便宜,无创业的方法,以及在水产养殖中的质量监测后进行更快,更便宜和非侵入性的方法。本综述描述了最新的技术和用于鱼类农业管理的不同光学传感器的适用性以及鱼类产品质量的评估,测量和预测。在本评价中讨论了水产养殖中的两个主要光学传感器应用领域:(i)在耕种和耕种期间;和(ii)收获后。最后,讨论了光学传感器在水产养殖中应用的准确性和不确定性。此评价显示,MVSS和光学传感器基于数码相机开发提供的巨大可能性,并提高基于计算机的加工速度的巨大可能性,发现了现实世界应用;然而,需要开发新的算法,方法和重新设计的传感器以满足真实的要求。

著录项

  • 来源
    《Review in aquaculture》 |2017年第4期|共19页
  • 作者单位

    Univ South Bohemia Ceske Budejovice Fac Fisheries &

    Protect Waters Lab Signal &

    Image Proc Inst Complex Syst South Bohemian Res Ctr Aquacult Zamek 136 Nove Hrady 37333 Czech Republic;

    Czech Univ Life Sci Prague Dept Soil Sci &

    Soil Protect Fac Agrobiol Food &

    Nat Resources Prague Czech Republic;

    Univ South Bohemia Ceske Budejovice Fac Fisheries &

    Protect Waters Lab Signal &

    Image Proc Inst Complex Syst South Bohemian Res Ctr Aquacult Zamek 136 Nove Hrady 37333 Czech Republic;

    Univ South Bohemia Ceske Budejovice Fac Fisheries &

    Protect Waters Lab Signal &

    Image Proc Inst Complex Syst South Bohemian Res Ctr Aquacult Zamek 136 Nove Hrady 37333 Czech Republic;

    Univ South Bohemia Ceske Budejovice Fac Fisheries &

    Protect Waters Lab Signal &

    Image Proc Inst Complex Syst South Bohemian Res Ctr Aquacult Zamek 136 Nove Hrady 37333 Czech Republic;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 水产、渔业;
  • 关键词

    accuracy and uncertainty; aquaculture; aquaculture management; fish quality; machine vision systems; optical sensors;

    机译:准确性和不确定度;水产养殖;水产养殖管理;鱼质量;机器视觉系统;光学传感器;

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