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Assessment of Penalty-Free Multi-Objective Evolutionary Optimization Approach for the Design and Rehabilitation of Water Distribution Systems

机译:供水系统设计与修复的免罚多目标进化优化方法评估

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摘要

This paper describes a penalty-free multi-objective evolutionary optimization approach for the phased whole-life design and rehabilitation of water distribution systems. The optimization model considers the initial construction, rehabilitation and upgrading costs. Repairs and pipe failure costs are included. The model also takes into consideration the deterioration over time of both the structural integrity and hydraulic capacity of every pipe. The fitness of each solution is determined from the trade-off between its lifetime costs and its actual hydraulic properties. The hydraulic analysis approach used, known as pressure-dependent modelling, considers explicitly the pressure dependency of the water supply consumers receive. Results for two sample networks in the literature are included that show the algorithm is stable and finds optimal and near-optimal solutions reliably and efficiently. The results also suggest that the evolutionary sampling efficiency is very high. In other words, the number of solutions evolved and analysed on average before finding a near-optimal solution is small in comparison to the total number of feasible and infeasible solutions. We found better solutions than those reported previously in the literature for the two networks considered. For the Kadu network, for example, the new best solution costs Rs125,460,980-a significant improvement. Additional statistics that are based on extensive testing are included.
机译:本文介绍了一种无惩罚的多目标进化优化方法,用于分阶段的终生设计和供水系统的修复。优化模型考虑了初始建设,修复和升级成本。包括维修和管道故障费用。该模型还考虑了每条管道的结构完整性和水力容量随时间的恶化。每个解决方案的适用性是根据其使用寿命成本与实际液压性能之间的折衷来确定的。所使用的水力分析方法(称为压力相关建模)明确考虑了用户所接受的供水的压力相关性。包括文献中两个样本网络的结果,这些结果表明该算法是稳定的,并且可以可靠,高效地找到最优和接近最优的解决方案。结果还表明,进化采样效率很高。换句话说,与可行和不可行的解决方案总数相比,在找到接近最优的解决方案之前平均演化和分析的解决方案数量很少。对于上述两个网络,我们找到了比文献中先前报道的解决方案更好的解决方案。例如,对于Kadu网络,新的最佳解决方案的成本为125,460,980卢比-显着提高。包括基于广泛测试的其他统计信息。

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