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Coupled Operating Rules for Optimal Operation of Multi-Reservoir Systems

机译:多储层系统最优运行的耦合运行规则

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摘要

Due to the complexity of multi-reservoir system operation problems, researchers usually prefer to assume lumped demands located downstream of such systems. Consequently, distributed local demands through the system are neglected or supplied completely (e.g. using Standard operating policy, SOP), in order to simplify the problem. In this study, Coupled Operating Rules (COR) as a simple and suitable operating policy is applied for optimal operation of multi-reservoir systems with local demands. The applied policy includes two types of linear rules, which are defined to determine total releases and local water allocations in decision points. This policy is adopted within a simulation-optimization approach to optimally operate a three-reservoir system in the Karkheh river basin. Obtained results indicate that the proposed strategy reduces the intensity of demand deficits and distributes the occurred shortages throughout the system properly. Moreover, the system losses are managed appropriately and big unbalanced local shortages are prevented. Although COR strategy decreases the reliability of local demands compared to SOP, it is a reasonable operating policy for systems with distributed local demand sites. Moreover, in this study an effective Improved Melody Search (IMeS) algorithm is proposed to achieve the optimum values of operating rules' parameters. The efficiency of the optimization method is compared to the results achieved by other selected well-known heuristic search methods. Based on the experimental results, it is revealed that the proposed algorithm is more effective in finding precise solutions over a long-term period, comparing with the other conventional algorithms.
机译:由于多水库系统运行问题的复杂性,研究人员通常更喜欢假设位于此类系统下游的集总需求。因此,为了简化问题,忽略或完全忽略了通过系统分配的本地需求(例如,使用标准操作策略,SOP)。在本研究中,将耦合操作规则(COR)作为一种简单且合适的操作策略应用于具有本地需求的多水库系统的最佳操作。所应用的策略包括两种类型的线性规则,它们被定义为确定决策点中的总释放量和局部水分配。在模拟优化方法中采用了该策略,以最佳地运行Karkheh流域的三水库系统。获得的结果表明,所提出的策略减少了需求赤字的强度,并在整个系统中适当地分配了发生的短缺。此外,可以适当地管理系统损失,并防止出现大的不平衡的本地短缺。尽管COR策略与SOP相比降低了本地需求的可靠性,但对于具有分布式本地需求站点的系统而言,这是一种合理的操作策略。此外,在这项研究中,提出了一种有效的改进旋律搜索(IMeS)算法,以实现操作规则参数的最佳值。将优化方法的效率与其他选定的众所周知的启发式搜索方法获得的结果进行比较。实验结果表明,与其他常规算法相比,该算法在长期寻找精确解方面更为有效。

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