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首页> 外文期刊>Journal of Water Resources Planning and Management >Optimization of Cascade Pumping Stations' Operations Based on Head Decomposition-Dynamic Programming Aggregation Method Considering Water Level Requirements
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Optimization of Cascade Pumping Stations' Operations Based on Head Decomposition-Dynamic Programming Aggregation Method Considering Water Level Requirements

机译:基于水头要求的水头分解-动态规划聚合方法的梯级泵站运行优化

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摘要

Aiming at the minimum power consumption for water pumping in a cascade pumping station system, we established a complex nonlinear mathematical model by taking optimized lift head and blade angle (or speed) of pump units as decision variables. The on-site optimal operation mode conforming to single-station water restriction was obtained by water decomposition-dynamic programming aggregation solution of the optimal operation model of pump stations under different discrete heads. After that, the constraint of total system lift head was considered. By taking lift heads of pump stations as decision variables, the original model was transformed into a one-dimensional dynamic programming aggregation model, which was solved by dynamic programming method. Through numerical simulation of unsteady flow in an interstage water channel, the optimal head distribution was modified to obtain optimal head distribution and unit optimization operation modes of pumping stations.
机译:针对级联泵站系统中抽水的最小功耗,我们通过将优化的扬程和泵单元的叶片角(或速度)作为决策变量,建立了一个复杂的非线性数学模型。通过对不同离散扬程下泵站最优运行模型的水分解-动态规划聚合解,得到了符合单站限水的现场最优运行模式。之后,考虑了系统总扬程的约束。以泵站扬程为决策变量,将原模型转化为一维动态规划集合模型,并通过动态规划方法求解。通过级间水道非定常流动的数值模拟,修改了最佳扬程分布,以获得最优扬程分布和泵站机组优化运行模式。

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