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An Optimization Model for the Integrated Operation of the Multiple Reservoirs in the Upper Yellow River

机译:黄河上游多水库综合调度优化模型。

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Yellow River is the second largest river in China. There are seven reservoirs and hydropower stations in the mainstream of Upper Yellow River. This paper presents an optimal mathematical model for the integrated operation of the seven reservoirs and hydropower stations. The objective of this model is to maximize the sum of electricity generated by all the hydropower stations with the constraint of firm power, and the Discrete Differential Dynamic Programming (DDDP) is employed to find the optimal solution of this model. The decision variables of DDDP are chosen as the reservoir discharge, while the state variables are reservoir storages, and the backward recursive equation is derived to find the reservoir optimal operation policies stage by stage. This model is used to find the integrated optimal operation policies of the past 33 years with observed hydrologic data, the results show that there has a 5.89 percent increase in the average annul electricity generated by all the seven hydropower stations. This implies that the model presented in this paper is good and can be used to derive the integrated operating rules of the reservoirs in Yellow River
机译:黄河是中国第二大河。黄河上游有七个水库和水电站。本文提出了七个水库和水电站综合运行的最佳数学模型。该模型的目的是在有约束力的约束下最大化所有水电站的发电总和,并采用离散差分动态规划(DDDP)来找到该模型的最佳解决方案。选择DDDP的决策变量作为水库流量,而状态变量为水库流量,并推导反向递推方程,逐步找到水库最优调度策略。利用该模型,利用观测的水文资料,找出了过去33年的综合最优运行策略,结果表明,七个水电站的平均年发电量增加了5.89%。这表明本文提出的模型是好的,可用于推导黄河水库综合运行规律。

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