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A fuzzy logic based irrigation system enhanced with wireless data logging applied to the state of Qatar.

机译:一种基于模糊逻辑的灌溉系统,并通过无线数据记录功能将其应用于卡塔尔州。

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In arid regions, developing environment and crop-specific irrigation scheduling that reduces water lost via evapotranspiration is a key to a sustainable and better managed irrigation. This paper presents a practical solution based on intelligent and effective system for a field of hyper aridity in Doha-Qatar. The system consists of a feedback fuzzy logic controller that logs key field parameters through specific sensors and a Zigbee-GPRS remote monitoring and database platform. The system is easy to deploy in existing drip irrigation systems without any physical modification. For a given crop, the fuzzy logic controller acquires data from these sensors and then applies well-devised fuzzy rules to produce appropriate time and duration for irrigation. All variables are fuzzified using trapezoidal and triangular membership functions. In this fuzzification, Max-Min inference engine and Mamdani-type rule base is adopted in order to make the best decision for each situation. Typical data in summer and winter showed that the controller ensures maintaining the soil moisture above a pre-defined value with non-abrupt oscillations. The system compensates the amount of water that is lost through evapotranspiration as predicted by Penman-Monteith model and hence allows predicting future water consumption. A local station first processes and saves real-time data received from the field controller via wireless Zigbee protocol to finally transmit these data to a remote station via a GPRS link. This enhancement enables tracking system performance in real time and creating a database for analysis and improvement. It follows that the deployment of fuzzy control combined with remote data logging would foster better management of irrigation and water resources in hyper-arid lands such as Qatar.Digital Object Identifier http://dx.doi.org/10.1016/j.compag.2013.08.018
机译:在干旱地区,不断发展的环境和针对特定作物的灌溉计划可减少因蒸散引起的水分流失,这是可持续和更好管理灌溉的关键。本文针对多哈卡塔尔的超干旱领域,提出了一种基于智能有效系统的实用解决方案。该系统由一个反馈模糊逻辑控制器组成,该控制器通过特定的传感器和一个Zigbee-GPRS远程监控和数据库平台记录关键领域的参数。该系统很容易部署在现有的滴灌系统中,无需进行任何物理修改。对于给定的农作物,模糊逻辑控制器从这些传感器获取数据,然后应用精心设计的模糊规则来产生适当的灌溉时间和持续时间。使用梯形和三角形隶属函数将所有变量模糊化。在这种模糊化中,采用了Max-Min推理引擎和Mamdani型规则库,以便针对每种情况做出最佳决策。夏季和冬季的典型数据表明,该控制器可确保土壤湿度保持在预定值以上,并且不会出现突然振荡。该系统补偿了Penman-Monteith模型预测的蒸发蒸腾损失的水量,因此可以预测未来的用水量。本地站首先处理并保存通过无线Zigbee协议从现场控制器接收到的实时数据,以最终通过GPRS链路将这些数据发送到远程站。这项增强功能可以实时跟踪系统性能,并创建数据库进行分析和改进。因此,将模糊控制与远程数据记录相结合的部署将有助于更好地管理卡塔尔等高干旱地区的灌溉和水资源。数字对象标识符http://dx.doi.org/10.1016/j.compag。 2013.08.018

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