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首页> 外文期刊>Journal of water resource and protection >Optimization of the Water Distribution Networks with Differential Evolution (DE) and Mixed Integer Linear Programming (MILP)
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Optimization of the Water Distribution Networks with Differential Evolution (DE) and Mixed Integer Linear Programming (MILP)

机译:具有差分进化(DE)和混合整数线性规划(MILP)的供水网络的优化

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摘要

Nowadays, due to increasing population and water shortage and competition for its consumption, especially in the agriculture, which is the largest consumer of water, proper and suitable utilization and optimal use of water resources is essential. One of the important parameters in agriculture field is water distribution network. In this research, differential evolution algorithm (DE) was used to optimize Ismail Abad water supply network. This network is pressurized network and includes 19 pipes and 18 nodes. Optimization of the network has been evaluated by developing an optimization model based on DE algorithm in MATLAB and the dynamic connection with EPANET software for network hydraulic calculation. The developing model was run for the scale factor (F), the crossover constant (Cr), initial population (N) and the number of generations (G) and was identified best adeptness for DE algorithm is 0.6, 0.5, 100 and 200 for F and Cr, N and G, respectively. The optimal solution was compared with the classical empirical method and results showed that implementation cost of the network by DE algorithm was 10.66% lower than the classical empirical method.
机译:如今,由于人口增加和水资源短缺以及其消费的竞争,特别是在农业方面,农业是最大的水消费国,因此对水资源的正确,适当利用和优化利用至关重要。供水网络是农业领域的重要参数之一。在这项研究中,使用差分进化算法(DE)来优化Ismail Abad供水网络。该网络是加压网络,包括19个管道和18个节点。通过在MATLAB中基于DE算法开发优化模型并与EPANET软件进行动态连接进行网络水力计算,对网络的优化进行了评估。针对比例因子(F),交叉常数(Cr),初始种群(N)和世代数(G)运行开发模型,并确定DE算法的最佳适应性为0.6、0.5、100和200 F和Cr,N和G。将最优解与经典经验方法进行比较,结果表明,DE算法的网络实现成本比经典经验方法低10.66%。

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