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Design of Intelligent Monitoring System for Aquaculture Water Dissolved Oxygen

机译:水产养殖水中溶解氧智能监测系统设计

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Rapid hypoxia of the aquaculture water is one of the important factors that cause large area death of the aquaculture animals. The monitoring for the dissolved oxygen (DO) of the aquaculture water is very important to the safety of the aquaculture production. An intelligent monitoring system for DO of the aquaculture water is designed which provides a powerful technology method for maintaining the DO level of the aquaculture water in a good range. The optical and polarographic DO sensor, the NB-IoT low-power and narrow-band communication technology and the programmable logic controller (PLC) technology are used to build this system which realizes the full-automatic and intelligent monitoring for DO of the aquaculture water. A continuous monitoring test for DO of the experiment Kio pond is made while the DO standard is set between 5 to 8mg/L in summer. Analyzing result from the data records of the system and the artificial sampling shows that the response time of the system reaches 5.92s. The system can control the circuit breaker of the oxygen-increasing machine intelligently without the human intervention. The system can also send the alarm message and feedback the working status of the oxygen-increasing device to the aquaculture manager and technician. The result shows that the system can replace the traditional artificial DO monitoring and the field control mode of the aquaculture water, while reducing the daily workload and power consumption of the oxygen-increasing machine effectively. The system can realize the intelligent 24-hour security monitoring for the DO level of the aquaculture water.
机译:水产养殖用水的快速缺氧是导致水产养殖动物大面积死亡的重要因素之一。监测水产养殖用水中的溶解氧(DO)对水产养殖生产的安全非常重要。设计了水产养殖用水中溶解氧的智能监测系统,为将水产养殖用水中溶解氧的水平维持在一个良好的范围内提供了有力的技术手段。使用光学和极谱溶解氧传感器,NB-IoT低功耗和窄带通信技术以及可编程逻辑控制器(PLC)技术来构建该系统,从而实现对养殖水溶解氧的全自动和智能监控。在夏季将DO的标准设定为5至8mg / L的同时,对实验Kio池的DO进行了连续监测测试。对系统数据记录和人工采样的分析结果表明,系统的响应时间达到了5.92s。该系统无需人工干预即可智能地控制增氧机的断路器。该系统还可以发送警报消息,并将增氧装置的工作状态反馈给水产养殖管理者和技术人员。结果表明,该系统可以代替传统的人工溶解氧监测和水产养殖场的田间控制方式,同时可以有效地减少增氧机的日常工作量和能耗。该系统可以实现对水产养殖水中溶解氧水平的24小时智能监控。

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