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Data-driven control of water reservoirs using an emulator of the climate system

机译:利用气候系统仿真器的水库数据驱动控制

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This study presents a novel approach to combine a data-driven control strategy with an emulator model of the climate system in order to make the optimal control of water systems more flexible and adaptive to the increasing frequency and intensity of extreme events. These latter are often associated with global climate anomalies, which are difficult to model and incorporate into optimal control algorithms. In this paper, we compare a traditional control policy conditioned only on the reservoir storage with an informed controller that enlarges the state space to include the emulated dynamics of global Sea Surface Temperature anomalies. The multi-purpose operations of Lake Como in Italy, accounting for flood control and water supply, is used as a case study. Numerical results show that the proposed approach provides a 59% improvement in system performance with respect to traditional solutions. This gain further increases during extreme drought episodes, which are influenced by global climate oscillations.
机译:本研究提出了一种新的方法来将数据驱动控制策略与气候系统的仿真模型相结合,以使水系统的最佳控制更加灵活,适应极端事件的增加和强度。这些后者通常与全球气候异常相关,这难以模拟并纳入最佳控制算法。在本文中,我们仅使用通知的控制器对比较储存的传统控制策略,该控制器扩大了状态空间以包括全球海表面温度异常的模拟动态。意大利科莫湖的多用途运营,占防洪和供水,作为案例研究。数值结果表明,该方法在传统解决方案方面提供了59%的系统性能改善。在极端干旱发作期间,这一增益进一步增加,这受全球气候振荡的影响。

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