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首页> 外文期刊>Journal of Water Resources Planning and Management >Efficient Two-Phase Algorithm to Solve Nonconvex MINLP Model of Pump Scheduling Problem
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Efficient Two-Phase Algorithm to Solve Nonconvex MINLP Model of Pump Scheduling Problem

机译:高效的两相算法解决泵调度问题的非透露MINLP模型

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In water distribution networks, pumps are used to raise the pressure of water and transfer it throughout the network. Because the cost of electricity consumed by pumps is very high, optimal planning of pumping operations is of great importance. In this paper, the pump scheduling problem is formulated as a mixed integer nonlinear programming (MINLP) model assuming that the flow direction on pipes is not fixed in advance. Due to the hydraulic constraints, the model contains nonlinear terms as the square of continuous variables. Because of the nonconvexity, the MINLP solvers would be unable to find a feasible solution to the moderate- and large-sized instances of the problem in a reasonable time. In this paper, a two-phase method is presented to solve the problem. In the first phase, an initial feasible solution is generated via a heuristic method based on the underlying problem structure. This solution is then fed into the second phase to reach a near-optimal solution. The core part of this algorithm is an iterative approach based on the piecewise McCormick relaxation technique, and to accelerate the method, some techniques such as bound-tightening and the addition of valid inequalities are proposed. Computational experiments on some real-world instances taken from the literature confirm the efficiency of the proposed method compared to MINLP solvers from both solution quality and time.
机译:在配水网络中,泵用于提高水压并将其转移到整个网络中。由于泵消耗的电力成本非常高,泵送操作的最佳规划非常重要。在本文中,假设管道上的流动方向未预先固定,将泵调度问题配制成混合整数非线性编程(MINLP)模型。由于液压约束,该模型包含非线性术语作为连续变量的平方。由于非凸起,MinLP求解器将无法在合理的时间内找到对问题的中等和大小和大型情况的可行解决方案。在本文中,提出了一种两相方法来解决问题。在第一阶段,通过基于底层问题结构的启发式方法生成初始可行解决方案。然后将该溶液送入第二阶段以达到近乎最佳溶液。该算法的核心部分是一种基于分段麦考克弛豫技术的迭代方法,并提出了一些方法,如绑定紧缩和添加有效不等式的一些技术。与文献中的一些现实情况实例的计算实验证实了与溶液质量和时间的MINLP求解器相比拟议方法的效率。

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