Supervision and Advanced Control Chair, Tecnológico de Monterrey, Campus Monterrey, Av. Eugenio Garza Sada 2501, Monterrey 64849, Mexico.
Sensors (Basel). 2013 Nov 4;13(11):14984-5005. doi: 10.3390/s131114984.
This paper proposes a new sensor placement approach for leak location in water distribution networks (WDNs). The sensor placement problem is formulated as an integer optimization problem. The optimization criterion consists in minimizing the number of non-isolable leaks according to the isolability criteria introduced. Because of the large size and non-linear integer nature of the resulting optimization problem, genetic algorithms (GAs) are used as the solution approach. The obtained results are compared with a semi-exhaustive search method with higher computational effort, proving that GA allows one to find near-optimal solutions with less computational load. Moreover, three ways of increasing the robustness of the GA-based sensor placement method have been proposed using a time horizon analysis, a distance-based scoring and considering different leaks sizes. A great advantage of the proposed methodology is that it does not depend on the isolation method chosen by the user, as long as it is based on leak sensitivity analysis. Experiments in two networks allow us to evaluate the performance of the proposed approach.
本文提出了一种新的传感器布置方法,用于定位供水管网(WDN)中的泄漏位置。将传感器布置问题表述为整数优化问题。优化标准是根据引入的可隔离性标准,使不可隔离的泄漏数量最小化。由于所得到的优化问题的规模大和非线性整数性质,遗传算法(GA)被用作求解方法。将得到的结果与计算工作量更高的半穷举搜索方法进行了比较,证明了 GA 可以用较少的计算负载找到接近最优的解决方案。此外,还提出了三种方法来提高基于 GA 的传感器布置方法的鲁棒性,方法是使用时间范围分析、基于距离的评分和考虑不同的泄漏尺寸。所提出方法的一个很大的优点是,它不依赖于用户选择的隔离方法,只要它基于泄漏灵敏度分析。在两个网络中的实验允许我们评估所提出方法的性能。