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Aquaponics – A Process Control Approach

机译:鱼菜共生–一种过程控制方法

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An aquaponics automation design was undertaken to interpret the system requirements to integrate automation to operate and optimize the system. The system was designed to increase the layers of control over the inputs and outputs to operate the system with a process control approach. The viability of these levels of control over the process was investigated by undertaking a processes design to assess types of instrumentation required and control functions that could be incorporated into the design to optimize the process. The design process incorporated sub-systems that did not rely on a main system, to increase ranges of commercially viable crops. The subsystems do not have the same environmental requirements of the main system and the subsystems environment could be calibrated to meet specific requirements of a selected crop including fruiting vegetable types. The results of the automation design have been tabulated into this article to assess the viability of increased levels of process control to obtain subsystem designs with maximized optimization.
机译:进行了共养素自动化设计来解释系统要求,以集成自动化来操作和优化系统。该系统旨在增加对输入和输出的控制层,以使用过程控制方法来操作系统。通过进行过程设计以评​​估所需仪器的类型以及可以合并到设计中以优化过程的控制功能,来研究这些水平的过程控制的可行性。设计过程采用了不依赖主系统的子系统,以增加商业上可行的农作物的范围。子系统与主系统的环境要求不同,可以对子系统的环境进行校准,以满足所选作物(包括果菜类型)的特定要求。自动化设计的结果已汇总到本文中,以评估过程控制级别提高的可行性,以获得具有最大优化的子系统设计。

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