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Penalty and relaxation methods for the optimal placement and operation of control valves in water supply networks

机译:用于供水网络中控制阀的最佳放置和操作的惩罚和放松方法

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摘要

In this paper, we investigate the application of penalty and relaxation methods to the problem of optimal placement and operation of control valves in water supply networks, where the minimization of average zone pressure is the objective. The optimization framework considers both the location and settings of control valves as decision variables. Hydraulic conservation laws are enforced as nonlinear constraints and binary variables are used to model the placement of control valves, resulting in a mixed-integer nonlinear program. We review and discuss theoretical and algorithmic properties of two solution approaches. These include penalty and relaxation methods that solve a sequence of nonlinear programs whose stationary points converge to a stationary point of the original mixed-integer program. We implement and evaluate the algorithms using a benchmarking water supply network. In addition, the performance of different update strategies for the penalty and relaxation parameters are investigated under multiple initial conditions. Practical recommendations on the numerical implementation are provided.
机译:在本文中,我们研究了惩罚和松弛方法在供水网络中控制阀的最佳放置和操作问题上的应用,其中以平均区域压力最小为目标。优化框架将控制阀的位置和设置都视为决策变量。由于非线性约束而强制执行水力守恒定律,并使用二进制变量对控制阀的布置进行建模,从而产生了混合整数非线性程序。我们回顾并讨论了两种解决方法的理论和算法性质。这些方法包括罚分法和松弛法,可以解决一系列非线性程序,这些非线性程序的固定点收敛于原始混合整数程序的固定点。我们使用基准供水网络实施和评估算法。此外,在多个初始条件下研究了惩罚和松弛参数的不同更新策略的性能。提供了有关数值实现的实用建议。

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