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首页> 外文期刊>Journal of Water Resources Planning and Management >Mixed-integer approach for obtaining unique solutions in source inversion of water networks
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Mixed-integer approach for obtaining unique solutions in source inversion of water networks

机译:在水源反演中获得唯一解的混合整数方法

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This paper addresses the problem of contamination source determination in municipal drinking water networks. In previous work, the authors introduced a large-scale nonlinear programming approach for identifying both the time and location of contamination sources given concentration information from a limited number of sensors. Due to the sparseness of the sensor grid, this problem inherently has nonunique solutions. The problem was therefore regularized, and the regularized solution provided an approximate linear combination of possible injection scenarios. In this paper, a mixed-integer quadratic program is presented to refine the solution provided by the nonlinear programming formulation. We introduce a two-phase approach. In the n-phase, the number of likely injection locations is estimated. Using this information; the e-phase is performed to extract the likely injection scenarios from the family of nonunique solutions. This two-phase approach is tested on a realistic municipal water network model with approximately 400 nodes, simulating five different injection scenarios. In all five examples, the approach was able to determine the correct number of injection locations and identify a set of possible injection scenarios containing the actual simulated injections.
机译:本文讨论了市政饮用水网络中污染源确定的问题。在先前的工作中,作者介绍了一种大规模的非线性编程方法,可以根据有限数量的传感器的浓度信息来识别污染源的时间和位置。由于传感器网格的稀疏性,该问题固有地具有非唯一的解决方案。因此,对问题进行了规范化,并且规范化的解决方案提供了可能的注入方案的近似线性组合。在本文中,提出了一种混合整数二次程序,以改进非线性编程公式提供的解决方案。我们介绍一种两阶段方法。在n相中,估计可能的注射位置数量。使用此信息;执行e阶段以从非唯一解决方案族中提取可能的注入方案。该两阶段方法在具有约400个节点的真实市政供水网络模型上进行了测试,模拟了五种不同的注入方案。在所有五个示例中,该方法能够确定正确的注射位置数量,并确定包含实际模拟注射的一组可能的注射方案。

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