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Bi-Level Optimization for Determining Operating Strategies for Inter-Basin Water Transfer-Supply Reservoirs

机译:双层优化确定流域间调水供应水库的运营策略

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Operating strategies for inter-basin water transfer-supply reservoirs play an important role in assisting in the decision-making process of effectively transferring and supplying water. This article presents a bi-level optimization model for determining operating strategies for inter-basin water transfer-supply reservoirs. The bi-level model avoids the structural description limitation of traditional optimization models, which normally optimize all of the variables simultaneously, by exactly describing the leader-follower framework used in water transfer-supply. The bi-level optimization problem was solved by using Adaptive Genetic Algorithm (AGA) and was compared with the traditional optimization model. Furthermore, to improve the solution procedure, two methods were used to improve the initial solution of the bi-level model, both based on probability description methods and chaos optimization. The method was applied in a case study of Biliu River reservoir, which is located in Liaoning Province, Northeast China. The results demonstrated that the bi-level model mathematically represents the hierarchical structure of inter-basin water transfer-supply operating strategies, but it requires more time than traditional models to find optimal solutions. Thus, this article proposes methods to improve the solution procedure. The results showed that the proposed bi-level model with the improved solution procedures achieves better reservoir operation performance and shorter calculation times than the general solution procedure when the same decision variables are considered. The amounts of transferred water and abandoned water decreased by 3.8% similar to 9.3% and 5.4% similar to 12.1%, respectively, thus representing an improvement in the efficiency of water transfer. Moreover, the calculation time was decreased by approximately 60%, relative to that of the general solution procedure.
机译:流域间调水供应水库的运行策略在协助有效调水和供水的决策过程中起着重要作用。本文提出了一种用于确定流域间输水供应水库运行策略的双层优化模型。双层模型避免了传统优化模型的结构描述限制,该模型通常通过准确描述输水供应中使用的前导跟随框架来同时优化所有变量。通过使用自适应遗传算法(AGA)解决了双层优化问题,并将其与传统的优化模型进行了比较。此外,为了改进求解程序,基于概率描述方法和混沌优化,使用了两种方法来改进双层模型的初始求解。该方法在位于中国东北辽宁省碧流河水库的案例研究中得到了应用。结果表明,该双层模型在数学上代表了流域间输水供应策略的层次结构,但是与传统模型相比,它需要更多的时间来寻找最佳解决方案。因此,本文提出了改进求解过程的方法。结果表明,在考虑相同决策变量的情况下,所提出的具有改进求解程序的双层模型具有比常规求解程序更好的油藏运行性能和较短的计算时间。调水量和弃水量分别下降了3.8%(与9.3%相似)和5.4%(与12.1%相似),从而表明了输水效率的提高。而且,相对于一般求解程序,计算时间减少了大约60%。

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