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Irrigation scheduling of a classical gravity network based on the Covariance Matrix Adaptation - Evolutionary Strategy algorithm

机译:基于协方差矩阵自适应进化策略算法的经典重力网灌溉调度。

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摘要

Irrigation scheduling is an important task that significantly influences water conservation and crop production. For most gravity irrigation networks located in semi-arid areas, irrigation scheduling is based on available water regardless of crops water needs. The objective of this study is to propose a new approach for optimizing irrigation scheduling taking into account crops water demand, based on the Covariance Matrix Adaptation - Evolution Strategy (CMA-ES) evolutionary strategy algorithm. The objective function, that must be minimized, of this optimization problem is defined as the sum of two terms. The first term is the Irrigation Priority Index (IPI) which characterizes the degree of imbalance between water stress and irrigation timing of the plot. The second one takes into account the various constraints that relate to canals capacity, tasks timing, geographical distances and canal flow rate variations. The approach was applied to an agricultural sector located at 40 km from the city of Marrakech (Morocco). Optimal schedule for the third irrigation, of the 2011-2012 agricultural season, is provided and the comparisons between schedules before and after optimization are made. The obtained results demonstrate that such approach allows reducing the proportion of late irrigated plots (from 22% to 8%) and increasing the proportion of plots irrigated at an appropriate time (from 28% to 40%). We conclude that this approach can be considered as an efficient tool for planning irrigation schedules by considering crops water needs.
机译:灌溉计划是一项重要任务,对节水和作物生产产生重大影响。对于位于半干旱地区的大多数重力灌溉网络,灌溉时间表基于可用水量而与农作物需水量无关。这项研究的目的是在协方差矩阵适应-进化策略(CMA-ES)进化策略算法的基础上,提出一种考虑作物需水量优化灌溉计划的新方法。此优化问题的必须最小化的目标函数定义为两个项的总和。第一项是灌溉优先级指数(IPI),该指数表征了该地块的水分胁迫和灌溉时间之间的不平衡程度。第二个考虑了与运河容量,任务时间,地理距离和运河流量变化有关的各种限制。该方法应用于距离马拉喀什市(摩洛哥)40公里的农业部门。提供了2011-2012年农业季节第三次灌溉的最佳计划,并进行了优化前后的计划比较。获得的结果表明,这种方法可以减少后期灌溉地块的比例(从22%到8%),并在适当的时间增加灌溉地块的比例(从28%到40%)。我们得出的结论是,通过考虑作物的需水量,可以将此方法视为规划灌溉计划的有效工具。

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