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養殖場智慧環控設施改良與應用

  • 日期:107-02-20
  • 計畫編號:107農科-14.2.8-水-A1
  • 年度:2018
  • 領域:智慧科技農業
  • 主持人:葉信利
  • 研究人員:陳陽德、朱永桐、邱沛盛、張丁仁、吳承憬、黃政軒、黃 建維

臺灣的水產養殖產業,目前多尚屬人工化之勞力養殖階段。本計畫透過生產力4.0宗 旨逐漸改善影響養殖產業,進入自動化養殖階段,最後朝向生產管理智慧化。106- 107年已建置自動環境控制模組、養殖池水質監測模組、自動投餌控制模組及智慧化 控制中心,同時在石斑魚養殖模場導入物聯網管理系統。以龍膽石斑、龍虎斑及日 本鮸進行自動化投餵養殖試運轉並與傳統人工投餵比較,結果顯示三種魚在體重、 體全長及日成長率方面沒有顯著差異,但自動化投餵系統每日投餵操作時間少於人 工投餵。另外,以自動投餵排汙養殖模組與傳統室內流加水養殖方式養殖日本鮸 30天,結果顯示自動投餵排汙模組能在投餵完畢後快速改善水質狀態。本計畫建置 之設施將可作為未來智能化養殖系統開發的指標。

研究報告摘要(英)


The aquaculture industry is currently still more labor-culture in Taiwan. The aim of this project was to improve aquaculture industry through Taiwan Productivity 4.0 conception and make aquaculture industry more mechanical and automatic. Finally toward the intelligent production management. The automatic environment control model, water quality monitoring system, feeding systems and management control center were constructed during 2017-2018. The Internet of Things system (IOTs )were induced to our grouper aquaculture factory. Comparison with growth parameters and feeding operation times of three economic marine fish ( Epinephelus lanceolatus , E. fuscoguttatus × E. lanceolatus and Argyrosomus japonicas) under different feeding model. The results indicated the growth parameters of three species were not significantly (P >0.05) different between two culture model, but the feeding operation times was significantly (P<0.05) shorter than artificial model. Finally, we compared with growth parameters and water qualities of Argyrosomus japonicas between automatic system and traditional culture model. The results indicated that automatic system was more fast to improve the water qualities after feeding. The facility of our project will be a indicative for develop the intelligent aquaculture system in the furture.