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Two-Stage Metaheuristic Mixed Integer Nonlinear Programming Approach to Extract Optimum Hedging Rules for Multireservoir Systems

机译:两阶段成逐混合整数非线性规划方法,提取多途化系统的最佳对冲规则

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Hedging policy is an applicable strategy for water resources systems with storage reservoirs to reduce the damage resulting from extended droughts. Optimizing the operation of parallel and cascade multireservoir systems is a challenging task because of its many complexities. This study proposes a two-stage approach for reaching both operating rule curves and rationing coefficients for multireservoir systems. In the first stage, initial solutions of the main problem are achieved by coupling the mixed-integer nonlinear programming (MINLP) with the particle swarm optimization algorithm. The achieved solutions are then adjusted in the second stage by implementing a distributed simulation-optimization model that efficiently models the system features. The proposed approach has been applied to gain optimal rule curves and rationing coefficients for the reservoirs of the Great Karun multireservoir system in southwestern Iran. The proposed model outperformed the other two-i.e., the distributed simulation-optimization model and the lumped MINLP model-in multireservoir system operation and was able to obtain the optimal hedging operating policy within a reasonable time. With this model, supply can be prioritized for various system demands. Also, the hedging operating policy from the proposed model significantly reduced the magnitude of failures during drought periods.
机译:对冲政策是具有储存水库的水资源系统的适用策略,以减少延长干旱导致的损害。优化并行的操作和级联的多排地服务系统是一个具有挑战性的任务,因为它很多复杂性。本研究提出了一种用于达到多途机器系统的操作规则曲线和配给系数的两级方法。在第一阶段,通过将混合整数非线性编程(MINLP)与粒子群优化算法耦合来实现主要问题的初始解。然后通过实现分布式仿真优化模型在第二阶段调整实现的解决方案,其有效地模拟了系统特征。所提出的方法已被应用于获得伊朗西南部伟大的Karun MultiServoir系统的最佳规则曲线和配给系数。所提出的模型表现出另外的两个-i。,分布式仿真优化模型和集成的MINLP模型 - 在多路程系统操作中,并且能够在合理的时间内获得最佳的套期保值操作策略。使用此模型,可以为各种系统需求进行优先考虑。此外,来自所提出的模型的对冲运营政策显着降低了干旱期间的故障幅度。

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