首页> 外文会议>IEEE Region 10 Conference >Aquaponics pH Level, Temperature, and Dissolved Oxygen Monitoring and Control System Using Raspberry Pi as Network Backbone
【24h】

Aquaponics pH Level, Temperature, and Dissolved Oxygen Monitoring and Control System Using Raspberry Pi as Network Backbone

机译:使用Raspberry Pi作为网络骨干的Aquaponics pH值,温度和溶解氧监控系统

获取原文

摘要

Monitoring environmental parameters in aquaponics is essential to sustain healthy living conditions for both fish and plants. In order to maximize growth for both, an optimal balance of environmental parameters present in the system is necessary. As a solution, an automated aquaponics system that reacts to parametric changes with an integrated web interface is developed. The Arduino microprocessor sends measured parameters to a central node which host a local server to store the data. Acquired data is processed and triggers corresponding actuators to maintain the optimal environmental parameters. All information are displayed in a mobile-friendly web application which enables access to the real-time and historical data, and manual controls of the actuators. Results shows that the calibrated sensors can gather sensor parameters with high accuracy through comparisons with commercial sensor readings. The control system is capable of running actuators automatically as a result of changes in sensor parameters or manually by the user. Each actuator was tested and successfully triggered for a set period of time for both manual and automated controls. Finally, the network backbone can transmit information and host a website that displays live sensor data, manually control the actuators, and save sensor reading logs. Sensor data are updated and are presented to the user every half seconds which ensures that the data presented are updated. A web application is also uploaded to Heroku which allows the user to view sensor logs and manually control the actuators anywhere. With the fully integrated system, the study was able to implement an automated aquaponics system that measures and controls pH, temperature, and dissolved Oxygen.
机译:监测鱼菜共生中的环境参数对于维持鱼类和植物的健康生活条件至关重要。为了使两者的生长最大化,系统中存在的环境参数的最佳平衡是必要的。作为解决方案,开发了一种自动鱼菜共生系统,该系统通过集成的Web界面对参数变化做出反应。 Arduino微处理器将测量的参数发送到中央节点,该中央节点托管本地服务器以存储数据。处理获取的数据并触发相应的执行器以保持最佳环境参数。所有信息都显示在易于移动的Web应用程序中,该应用程序可以访问实时和历史数据以及执行器的手动控制。结果表明,通过与商用传感器读数进行比较,已校准的传感器可以高精度地收集传感器参数。由于传感器参数的更改,控制系统能够自动运行执行器,或者由用户手动运行。对每个执行器进行了测试,并在设定的时间段内成功触发了手动和自动控制。最后,网络骨干网可以传输信息并托管一个网站,以显示实时传感器数据,手动控制执行器并保存传感器读取日志。传感器数据会每半秒更新一次并显示给用户,以确保所显示的数据得到更新。 Web应用程序也上传到Heroku,允许用户查看传感器日志并在任何地方手动控制执行器。借助完全集成的系统,该研究得以实现一种自动的水培系统,该系统可测量和控制pH,温度和溶解氧。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号