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Multi-Objective Optimization of Multi-Reservoir Operation Rules with Controlling Critical Water Levels

机译:控制关键水位的多水库调度规则的多目标优化

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A new method is developed to identify the operation rules of multiple-reservoir system by controlling critical water levels. Several critical water levels at the begging and endding of the flood season are first introduced and taken as optimization variables. The historical inflows each year are considered in the optimization to find a satisfactory operation decesion as the initial solution of operating rule. Two objectives of maximizing the annual power generation and minimizing the spilled water are adopted to further optimize the solution with the predicted runoff. Finally, the empirical decision helps to determine the rational operation result. The proposed method has been applied to the cascaded hydropower plants on the Lancang River. The application results show that our method can obtain feasible operation rules, which is more useful in the real-world engineering compared to the conventional operation rule.
机译:开发了一种新方法来通过控制关键水平来识别多储层系统的操作规则。首先引入洪水季节的几个关键水平和洪水季节的终结,并作为优化变量。在优化中考虑了每年的历史流入,以找到令人满意的操作Decesion作为操作规则的初始解决方案。采用了两个最大化年发电和最小化溢出水的两个目标来进一步优化预测径流的解决方案。最后,经验决策有助于确定合理的运行结果。该方法已应用于澜沧江级联水电站。应用结果表明,与传统操作规则相比,我们的方法可以获得可行的操作规则,这在真实世界工程中更有用。

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