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基于当前最具代表性的需水传感器的无土作物智能灌溉设备的开发。

Development of Smart Irrigation Equipment for Soilless Crops Based on the Current Most Representative Water-Demand Sensors.

机构信息

Riegos y Tecnología SL. Circunvalación, S/N, 30880 Águilas, Spain.

Department of Automation, Electrical Engineering and Electronics Technology, Universidad Politécnica de Cartagena, St. Dr. Fleming, s/n, 30203 Cartagena, Spain.

出版信息

Sensors (Basel). 2023 Mar 16;23(6):3177. doi: 10.3390/s23063177.

Abstract

Due to the edaphoclimatic conditions in southeast Spain, which are expected to worsen due to climate change, more efficient ways of using water must be found to maintain sustainable agriculture. Due to the current high price of irrigation control systems in southern Europe, 60-80% of soilless crops are still irrigated, based on the experience of the grower or advisor. The hypothesis of this work is that the development of a low-cost, high-performance control system will allow small farmers to improve the efficiency of water use by obtaining better control of soilless crops. The objective of the present study was to design and develop a cost-effective control system for the optimization of soilless crop irrigation after evaluating the three most commonly used irrigation control systems to determine the most efficient. Based on the agronomic results comparing these methods, a prototype of a commercial smart gravimetric tray was developed. The device records the irrigation and drainage volumes and drainage pH and EC. It also offers the possibility of determining the temperature, EC, and humidity of the substrate. This new design is scalable thanks to the use of an implemented data acquisition system called SDB and the development of software in the Codesys programming environment based on function blocks and variable structures. The reduced wiring achieved by the Modbus-RTU communication protocols means the system is cost-effective even with multiple control zones. It is also compatible with any type of fertigation controller through external activation. Its design and features solve the problems in similar systems available on the market at an affordable cost. The idea is to allow farmers to increase their productivity without having to make a large outlay. The impact of this work will make it possible for small-scale farmers to have access to affordable, state-of-the-art technology for soilless irrigation management leading to a considerable improvement in productivity.

摘要

由于西班牙东南部的土壤气候条件预计会因气候变化而恶化,因此必须找到更有效的用水方式来维持可持续农业。由于目前欧洲南部灌溉控制系统价格较高,根据种植者或顾问的经验,仍有 60-80%的无土作物采用灌溉方式。这项工作的假设是,开发一种低成本、高性能的控制系统将使小农户能够通过更好地控制无土作物来提高用水效率。本研究的目的是设计和开发一种具有成本效益的控制系统,以优化无土作物的灌溉,方法是评估三种最常用的灌溉控制系统,以确定最有效的系统。基于这些方法的农艺结果,开发了一种商业智能称重托盘的原型。该设备记录灌溉和排水量以及排水的 pH 值和 EC 值。它还提供了确定基质温度、EC 和湿度的可能性。由于使用了称为 SDB 的实现数据采集系统和基于功能块和变量结构的 Codesys 编程环境中的软件开发,因此这种新设计具有可扩展性。Modbus-RTU 通信协议减少的布线意味着即使有多个控制区域,系统也具有成本效益。它还通过外部激活与任何类型的施肥控制器兼容。其设计和功能解决了市场上类似系统的问题,成本低廉。其理念是让农民在无需大量投资的情况下提高生产力。这项工作的影响将使小规模农民能够获得负担得起的、最先进的无土灌溉管理技术,从而大大提高生产力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa8d/10057735/a62b683c4377/sensors-23-03177-g0A1.jpg

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