首页> 外文会议>International Conference on Hydroinformatics >OPTIMIZING OPERATING RULES OF MULTIPLE SOURCE WATER SUPPLY SYSTEMS IN TERMS OF SYSTEM GUARANTEE AND RESULTING OPERATING COSTS: SURVEY OF SIMULATION-OPTIMIZATION MODELING APPROACHES BASED ON GENERAL PURPOSE TOOLS
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OPTIMIZING OPERATING RULES OF MULTIPLE SOURCE WATER SUPPLY SYSTEMS IN TERMS OF SYSTEM GUARANTEE AND RESULTING OPERATING COSTS: SURVEY OF SIMULATION-OPTIMIZATION MODELING APPROACHES BASED ON GENERAL PURPOSE TOOLS

机译:在系统保障方面优化多源供水系统的操作规则,并产生运营成本:基于通用工具的仿真优化建模方法调查

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Management and operation of a multiple-objective multisource water supply system from the point of view of the conjunctive use of water sources is a very complex problem whose solution is not just obtained using analytical models but also through a negotiation process among stakeholders and in which Public Bodies have a main role. For these reasons, this problem has been addressed using conservative approaches based on simulation models or simulation -linear optimization models parameterized using few parameters which, in general, are already covered by existing generalized modelling tools using a longer or shorter trial and error process. However, these conservative approaches have drawbacks and constraints when dealing with certain complexities of water supply systems (i.e.: non-linearity, uncertainty or stochastic nature) that may prevent them of finding an optimal solution. This paper identifies and tests suitable simulation-optimization approaches found in existing generalized modeling tools for optimizing operating rules of multisource water supply systems in terms of system guarantee and resulting operating costs. The main purpose is to find out whether these approaches are already covering the decision support needs of managers, Public Bodies or other stakeholders involved in the operation of these systems, or 'ad-hoc' tools may be needed.
机译:从水源的联合使用的角度来看,多目标多源供水系统的管理和运营是一个非常复杂的问题,其解决方案不仅可以使用分析模型获得,而且还通过利益攸关方之间的谈判过程以及公众尸体有一个主要作用。出于这些原因,通过使用少数参数参数化的仿真模型或模拟 - 线性优化模型使用的保守方法来解决了该问题,通常,通常由使用更长或更短的试验和错误过程所覆盖的现有广义建模工具。然而,这些保守方法在处理水供应系统的某些复杂性时具有缺点和约束(即:非线性,不确定或随机性质),这可能阻止它们找到最佳解决方案。本文识别并测试现有的广义建模工具中的合适仿真优化方法,以便在系统保证方面优化多源供水系统的操作规则,并导致运营成本。主要目的是找出这些方法是否已经涵盖了管理人员的决策支持需求,公共机构或参与这些系统运作的其他利益攸关方,或者可能需要“ad-hoc”工具。

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