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Optimal design of sewer networks using cellular automata-based hybrid methods: Discrete and continuous approaches

机译:使用基于细胞自动机的混合方法对下水道网络进行优化设计:离散和连续方法

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In this article, cellular automata based hybrid methods are proposed for the optimal design of sewer networks and their performance is compared with some of the common heuristic search methods. The problem of optimal design of sewer networks is first decomposed into two sub-optimization problems which are solved iteratively in a two stage manner. In the first stage, the pipe diameters of the network are assumed fixed and the nodal cover depths of the network are determined by solving a nonlinear sub-optimization problem. A cellular automata (CA) method is used for the solution of the optimization problem with the network nodes considered as the cells and their cover depths as the cell states. In the second stage, the nodal cover depths calculated from the first stage are fixed and the pipe diameters are calculated by solving a second nonlinear sub-optimization problem. Once again a CA method is used to solve the optimization problem of the second stage with the pipes considered as the CA cells and their corresponding diameters as the cell states. Two different updating rules are derived and used for the CA of the second stage depending on the treatment of the pipe diameters. In the continuous approach, the pipe diameters are considered as continuous variables and the corresponding updating rule is derived mathematically from the original objective function of the problem. In the discrete approach, however, an adhoc updating rule is derived and used taking into account the discrete nature of the pipe diameters. The proposed methods are used to optimally solve two sewer network problems and the results are presented and compared with those obtained by other methods. The results show that the proposed CA based hybrid methods are more efficient and effective than the most powerful search methods considered in this work.
机译:在本文中,提出了基于元胞自动机的混合方法用于下水道网络的优化设计,并将其性能与一些常见的启发式搜索方法进行了比较。下水道网络的优化设计问题首先被分解为两个子优化问题,以两个阶段的方式迭代地解决该问题。在第一阶段,通过解决非线性次优化问题,假设网络的管径是固定的,并确定网络的节点覆盖深度。蜂窝自动机(CA)方法用于解决优化问题,将网络节点视为小区,并将其覆盖深度视为小区状态。在第二阶段中,从第一阶段计算出的节点覆盖深度是固定的,并且通过解决第二个非线性次优化问题来计算管道直径。再次使用CA方法解决第二阶段的优化问题,将管道视为CA单元,并将其相应直径作为单元状态。根据管道直径的处理方式,得出了两个不同的更新规则,并将其用于第二阶段的CA。在连续方法中,将管道直径视为连续变量,并且从问题的原始目标函数中数学得出相应的更新规则。然而,在离散方法中,考虑到管径的离散性质,得出并使用了特别更新规则。所提出的方法用于最优地解决两个下水道网络问题,并给出了结果并与其他方法获得的结果进行了比较。结果表明,提出的基于CA的混合方法比本工作中考虑的最强大的搜索方法更有效。

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