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首页> 外文期刊>Journal of Water Resources Planning and Management >Simultaneous Optimization of Operating Rules and Rule Curves for Multireservoir Systems Using a Self-Adaptive Simulation-GA Model
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Simultaneous Optimization of Operating Rules and Rule Curves for Multireservoir Systems Using a Self-Adaptive Simulation-GA Model

机译:使用自适应GA模型同时优化多水库系统运行规则和规则曲线

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摘要

This study introduces a simulation-optimization model for deriving an operating policy for multireservoir systems. Two adjustable monthly rule curves are introduced to each reservoir in the system. The applied rule curves divide the reservoir volume into three zones in each within-year period. For each zone, a release coefficient is specified to indicate releases from the reservoir as a function of the available storage and time of the year. To obtain optimum rule curves and release rules, a self-adaptive genetic algorithm (GA) is developed to maximize the system's hydropower production, subject to the system's physical constraints as well as a desirable reliability to satisfy water demands. To evaluate the objective function and constraints, a simulation model based on the network flow technique and linear programming is developed and coupled to the GA. The model is applied to a real three-reservoir system in Iran and the results are discussed and compared to the standard operation policy (SOP).
机译:这项研究介绍了一种模拟优化模型,用于推导多储层系统的运行策略。将两条可调整的月度规则曲线引入系统中的每个储层。所应用的规则曲线在一年中的每个年度内将储层容量分为三个区域。对于每个区域,都指定了释放系数,以指示根据可用存储量和一年中的时间从储层中释放的量。为了获得最佳的规则曲线和释放规则,开发了一种自适应遗传算法(GA),可在系统的物理约束以及满足水需求的期望可靠性的前提下,最大化系统的水力发电量。为了评估目标函数和约束条件,开发了基于网络流技术和线性规划的仿真模型并将其耦合到GA。该模型已应用于伊朗的一个实际三水库系统,并讨论了结果并将其与标准作业策略(SOP)进行比较。

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