Precision fish farming: A new framework to improve production in aquaculture
Точное рыбоводство: новая концепция для повышения эффективности производства в аквакультуре
2017-11-14
SCID: 54.1/wv9qn7zr
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Precision Fish Farming (PFF)biomass monitoringcontrol-engineering principlesfeed delivery controlparasite monitoring
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Abstract (AI)
Aquaculture production of finfish has seen rapid growth in production volume and economic yield over the last decades, and is today a key provider of seafood. As the scale of production increases, so does the likelihood that the industry will face emerging biological, economic and social challenges that may influence the ability to maintain ethically sound, productive and environmentally friendly production of fish. It is therefore important that the industry aspires to monitor and control the effects of these challenges to avoid also upscaling potential problems when upscaling production. We introduce the Precision Fish Farming (PFF) concept whose aim is to apply control-engineering principles to fish production, thereby improving the farmer's ability to monitor, control and document biological processes in fish farms. By adapting several core principles from Precision Livestock Farming (PLF), and accounting for the boundary conditions and possibilities that are particular to farming operations in the aquatic environment, PFF will contribute to moving commercial aquaculture from the traditional experience-based to a knowledge-based production regime. This can only be achieved through increased use of emerging technologies and automated systems. We have also reviewed existing technological solutions that could represent important components in future PFF applications. To illustrate the potential of such applications, we have defined four case studies aimed at solving specific challenges related to biomass monitoring, control of feed delivery, parasite monitoring and management of crowding operations.
Key Findings
1
Adapting core principles from Precision Livestock Farming (PLF) to aquaculture requires accounting for aquatic-specific boundary conditions and possibilities.
2
Four illustrative case studies are defined addressing biomass monitoring, feed delivery control, parasite monitoring, and crowding operations management.
3
PFF aims to shift commercial aquaculture from traditional experience-based practices to a knowledge-based production regime via increased use of emerging technologies and automation.
4
Precision Fish Farming (PFF) is proposed to apply control-engineering principles to fish production to improve monitoring, control, and documentation of biological processes.
5
The paper reviews existing technological solutions that could serve as components of future PFF systems.
Research Object
Commercial finfish aquaculture production systems (fish farms)
Research Subject
Application of Precision Fish Farming control-engineering principles and emerging automated technologies to monitor, control, and document biological processes and production operations (biomass monitoring, feed delivery control, parasite monitoring, crowding management) to improve production
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2017-11-14
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