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Multi-Objective Optimization Model for Design and Operation of Water Transmission Systems Using a Power Resilience Index for Assessing Hydraulic Reliability

机译:利用功率弹性指标评估水力可靠性的输水系统设计和运行的多目标优化模型

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摘要

Water Transmission Systems (WTSs) are used to transport large flow over long distances and/or high heads. An optimal design involves evaluation of both cost and reliability objectives. The objective of this paper is to develop a novel approach to reliability-based optimization of WTS with pump stations by linking the optimization model in Non-dominated Sorting Genetic Algorithm (NSGA-II) to a simulation in EPANET2.0. The two objectives considered include minimizing the total cost of the system and maximizing the reliability. A new resilience measure is also developed as a hydraulic reliability measure for pump stations in WTSs based on Best Efficiency Pump (BEP). The present model is applied to a WTS case study in Iran. The results are then presented for the trade-off characteristics between total cost and reliability. The results indicate that 7.6% increase in costs can result in a significant growth in reliability from 0.06 to 0.91. Accordingly, the Power Resilience Index (PRI) can be used as a measure of hydraulic reliability in water transmission systems with pump station.
机译:输水系统(WTS)用于在长距离和/或高扬程下输送大流量。最佳设计涉及对成本和可靠性目标的评估。本文的目的是通过将非支配排序遗传算法(NSGA-II)中的优化模型与EPANET2.0中的仿真相链接,开发一种基于可靠性的WTS泵站优化方法。考虑的两个目标包括最小化系统的总成本和最大化可靠性。基于最佳效率泵(BEP),还开发了一种新的弹性措施,作为WTS中泵站的液压可靠性措施。本模型应用于伊朗的WTS案例研究。然后针对总成本和可靠性之间的权衡特性给出结果。结果表明,成本增加7.6%可使可靠性从0.06显着提高到0.91。因此,功率弹性指数(PRI)可以用作带有泵站的输水系统中水力可靠性的量度。

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