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Simulation-Optimization Modeling of Conjunctive Operation of Reservoirs and Ponds for Irrigation of Multiple Crops Using an Improved Artificial Bee Colony Algorithm

机译:改进的人工蜂群算法在多种作物灌溉水库蓄水池联合作业中的模拟优化建模

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Seasonal drought has become an important factor in agricultural production in humid and semi-humid areas. In this study, to mitigate the impact of seasonal drought, a new integrated mathematical model is proposed for optimal multi-crop irrigation scheduling, which is associated with conjunctive operation of reservoirs and ponds to maximize the annual returns for a reservoir-pond irrigation system. This objective is achieved via the use of two models: an operating policy model, which considers the regulatory role of ponds and optimizes reservoirs and ponds releases in one third of a month, and an allocation model, which optimizes irrigation allocations across crops by addressing water production function. The uneven distribution of ponds is also considered by dividing the irrigation district into many sub-districts. Artificial bee colony algorithm is innovatively improved by incorporating differential evolution algorithm and particle swarm optimization algorithm to solve this nonlinear, high-dimensional and complex optimization problem. The methodology is applied to the Zhanghe Irrigation Distict, which is located in Hubei Province of China, to demonstrate its applicability, and three additional models are simulated to demonstrate the validity of the integrated model. The results indicate that the integrated model can alleviate the impact of the seasonal drought and has remarkable optimization effect, especially for drought years. The average annual return calculated by the integrated model is 7.9, 7.0 and 3.1 % higher than that of the remaining three models, respectively. And in the special dry year, in which the frequency of rainfall is 95 %, the annual return calculated by the integrated model is 24.5, 21.8 and 10.1 % higher than that of the remaining three models, respectively.
机译:季节性干旱已成为潮湿和半潮湿地区农业生产的重要因素。在这项研究中,为减轻季节性干旱的影响,提出了一种新的综合数学模型,以优化多作物灌溉计划,该模型与水库和池塘的联合运行相关联,以最大化水库池塘灌溉系统的年收益。通过使用两个模型来实现该目标:一个操作策略模型,该模型考虑了池塘的调节作用,并在一个月的三分之一时间内优化了水库和池塘的排放,而分配模型则通过解决水资源问题而优化了作物间的灌溉分配生产功能。通过将灌溉区划分为许多分区,还可以考虑池塘分布不均。通过结合差分进化算法和粒子群优化算法来创新地改进人工蜂群算法,以解决该非线性,高维和复杂的优化问题。该方法被应用到位于中国湖北省的漳河灌区,以证明其适用性,并模拟了三个附加模型以证明该综合模型的有效性。结果表明,该综合模型可以缓解季节性干旱的影响,并具有明显的优化效果,尤其是干旱年份。集成模型计算出的年平均回报分别比其余三个模型分别高7.9%,7.0%和3.1%。在特殊的干旱年份中,降雨频率为95%,综合模型计算出的年收益分别比其余三个模型分别高24.5%,21.8%和10.1%。

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