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integrating evolution strategies and genetic algorithms with agent-based modeling for flushing a contaminated water distribution system

机译:将进化策略和遗传算法与基于代理的建模相结合,以冲洗污水分配系统

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摘要

Water utilities can prepare for water distribution hazards, such as the presence of contaminants in the pipe network and failure of physical components, In contamination events, the complex interactions among managers' operational decisions, consumers' water consumption choices, and the hydraulics and contaminant transport in the water distribution system may influence the contaminant plume so that a typical engineering model may not properly predict public health consequences. A complex adaptive system (CAS) approach couples engineering models of a water distribution system with agent-based models of consumers and public officials. Development of threat management strategies, which prescribe a set of actions to mitigate public health consequences, is enabled through a simulation-optimization framework that couples evolutionary algorithms with the CAS model. Evolution strategies and genetic algorithm-based approaches are developed and compared for an illustrative case study to identify a flushing strategy for opening hydrants to minimize the number of exposed consumers and maintain acceptable levels of service in the network.
机译:自来水公司可以为水的分配风险做好准备,例如管网中污染物的存在和物理组件的故障。在污染事件中,管理人员的运营决策,消费者的用水选择以及液压和污染物输送之间的复杂相互作用供水系统中的水可能会影响污染物羽流,因此典型的工程模型可能无法正确预测公共卫生后果。复杂的自适应系统(CAS)方法将供水系统的工程模型与基于代理的消费者和公职人员模型结合在一起。通过将进化算法与CAS模型结合在一起的模拟优化框架,可以制定威胁管理策略,该策略规定了一系列减轻公共卫生后果的措施。制定了进化策略和基于遗传算法的方法,并进行了比较,以进行说明性案例研究,从而确定用于打开消防栓的冲水策略,以最大程度地减少暴露的消费者数量并保持网络中可接受的服务水平。

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