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首页> 外文期刊>Environmental Modeling & Assessment >Hybrid ACO-ANN-Based Multi-objective Simulation-Optimization Model for Pollutant Load Control at Basin Scale
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Hybrid ACO-ANN-Based Multi-objective Simulation-Optimization Model for Pollutant Load Control at Basin Scale

机译:基于混合ACO-ANN的多目标流域规模污染控制的优化模型

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The systematic and integrative approach to optimum watershed management couples a watershed simulation model and an efficient optimization algorithm for evaluating great number of "what if scenarios in the search domain. This study integrates a multi-objective Non-dominated Archiving Ant Colony Optimization (NA-ACO) algorithm as an optimization tool with Soil and Water Assessment Tool (SWAT) as the simulation module for optimum management of total suspended solids (TSS) loading to downstream water bodies. The resulting NA-ACO-SWAT model is computationally and experimentally expensive because of the large number of required function evaluations which demands repetitive execution of SWAT simulation model. To increase the computational efficiency of the watershed simulation model, the SWAT model is replaced by a trained artificial neural network (ANN) model to form a hybrid NA-ACO-SWAT-ANN model to efficiently develop the set of optimum non-dominated solutions for configuration and design of detention ponds in basin scale. The applicability of the proposed method is evaluated at Gharesou watershed in the northwest of Iran. The outcomes of the proposed approach is further analyzed and compared in terms of their quality of solutions and computational efficiencies. Results show that the proposed hybrid approach may reduce the computational time by 90 % while keeping the accuracy of the results in the same order.
机译:系统和集成的优化分水岭管理方法结合了分水岭模拟模型和有效的优化算法,用于评估搜索域中的大量“假设假设”。这项研究整合了多目标非支配存档蚁群优化(NA- ACO)算法作为优化工具,而土壤和水评估工具(SWAT)作为模拟模块,可以优化管理下游水体中总悬浮固体(TSS)的装载量,因此所得的NA-ACO-SWAT模型在计算和实验上都很昂贵,因为大量必需的功能评估需要重复执行SWAT模拟模型为了提高分水岭模拟模型的计算效率,将SWAT模型替换为训练有素的人工神经网络(ANN)模型以形成混合NA-ACO -SWAT-ANN模型可有效地开发用于配置和设计的最佳非支配解决方案集盆地规模的滞留池数量。该方法的适用性在伊朗西北部的Gharesou流域进行了评估。拟议方法的结果将根据其解决方案的质量和计算效率进行进一步分析和比较。结果表明,所提出的混合方法可以将计算时间减少90%,同时保持结果的准确性不变。

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