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Data-driven control of water reservoirs using El Ni?o Southern Oscillation indexes

机译:使用EL NI的水库数据驱动控制南部振荡指数

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Advanced modeling and control contribute to the design of efficient and sustainable water management strategies, which are challenged by the increasing frequency and intensity of extreme events often associated with large-scale climate signals, such as El Ni?o Southern Oscillation (ENSO). Despite ENSO-related information provides a great opportunity to make the operations of water systems more flexible and adaptive, incorporating it into an operating policy still represents a major challenge for optimal control algorithms. In this work, we contribute a framework combining Input Variable Selection techniques for ENSO detection with a data-driven control strategy to use this information for improving the system operations. Our framework is demonstrated on the control of the multipurpose Hoa Binh reservoir (Vietnam), showing that ENSO teleconnection represents a valuable information for addressing the performance tradeoffs between energy production, water supply, and flood protection.
机译:先进的建模和控制有助于设计有效和可持续的水管理策略,这些频率增加频率和极端事件的频率和强度往往与大规模的气候信号相关,如EL NI?O Southern振荡(ENSO)。尽管有相关的信息,但提供了一个很好的机会,使水系统的运营更加灵活和自适应,将其纳入操作政策仍然是最佳控制算法的主要挑战。在这项工作中,我们有助于使用数据驱动的控制策略组合输入可变选择技术的框架,以使用这些信息来改善系统操作。我们的框架是关于控制多功能Hoa Binh水库(越南)的控制,表明ENSO Teleconnection表示用于解决能源生产,供水和防洪之间的性能权衡的有价值信息。

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