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Improvement of reservoir operation by hybrid optimization algorithm: case study of Huong Dien Reservoir, Vietnam

机译:通过混合优化算法改善水库运行状况:以越南香甸水库为例

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An Improved Incremental Dynamic Programming (IDP) algorithm is developed in this study by combining IDP and Harmony Search (HS) to form HS-IDP for the initial procedure of generating decision variables. The developed hybrid algorithm (HS-IDP) and HS algorithm are simultaneously proposed for optimizing the reservoir operation to effectively solve a linear reservoir water balance equation and an objective function of benefit of Hydroelectrical Power (HP) to find optimal decision variables, taking into account water release or storage volume rates. The optimal reservoir operation (ORO) model is firstly applied for HuongDien (HD) hydroelectric dam of Hue Basin, Vietnam, downstream as it reaches Bo River where many critical problems have occurred such as water shortages and flooding inundations. This paper outlines how to reduce the impact of droughts and floods and to maximize the economic benefit through effective HD reservoir operation. The results indicated that the hybrid algorithm found the optimal decision variables having the highest HP benefit, while satisfying the specified constraints for reservoir and downstream safety.
机译:通过结合IDP和Harmony Search(HS)形成用于生成决策变量的初始过程的HS-IDP,本研究开发了一种改进的增量动态规划(IDP)算法。同时提出了开发的混合算法(HS-IDP)和HS算法来优化水库运行,以有效地解决线性水库水平衡方程和水电收益(HP)的目标函数,从而找到最佳决策变量,放水量或储水量率。最优水库调度模型首先应用于越南顺化盆地的洪甸(HuongDien)水电大坝,下游到达博河(Bo River)时,发生了许多关键问题,例如缺水和洪水泛滥。本文概述了如何通过有效的HD水库运营来减少干旱和洪水的影响并最大程度地提高经济效益。结果表明,该混合算法找到了具有最高HP收益的最优决策变量,同时满足了对水库和下游安全性的特定约束。

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