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Decision Support System for emergency scheduling of raw water supply systems with multiple sources

机译:多源原水供应系统应急调度决策支持系统

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摘要

A hydraulic model-based emergency scheduling Decision Support System (DSS) is designed to eliminate the impact of sudden contamination incidents occurring upstream in raw water supply systems with multiple sources. The DSS consists of four functional modules, including water quality prediction, system safety assessment, emergency strategy inference and scheduling optimization. The work flow of the DSS is as follows. First, the water quality variations on specific cross-sections are calculated given the pollution information. Next, a comprehensive evaluation on the safety of the current system is conducted using the outputs in the first module. This will assist in the assessment of whether the system is in danger of failure, taking both the impact of pollution and system capacity into account. If there is a severe impact of contamination on the reliability of the system, a fuzzy logic based inference module is employed to generate reasonable strategies including technical measures. Otherwise, a Genetic Algorithm (GA)-based optimization model will be used to find the least-cost scheduling plan. The proposed DSS has been applied to a coastal city in South China during a saline tide period as validation. Through scenario analysis, it is demonstrated that this DSS tool is instrumental in emergency scheduling for the water company to quickly and effectively respond to sudden contamination incidents.
机译:设计基于液压模型的紧急调度决策支持系统(DSS),以消除在具有多个水源的原水供应系统中上游发生突发污染事件的影响。 DSS由四个功能模块组成,包括水质预测,系统安全评估,应急策略推断和调度优化。 DSS的工作流程如下。首先,根据污染信息计算特定横截面的水质变化。接下来,使用第一个模块中的输出对当前系统的安全性进行全面评估。考虑到污染的影响和系统容量,这将有助于评估系统是否有发生故障的危险。如果污染严重影响系统的可靠性,则可以使用基于模糊逻辑的推理模块来生成包括技术措施在内的合理策略。否则,将使用基于遗传算法(GA)的优化模型来查找成本最低的调度计划。拟议的DSS已在盐湖潮潮时期应用于华南沿海城市作为验证。通过方案分析,表明该DSS工具有助于自来水公司快速有效地应对突发污染事件的应急调度。

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