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Mixed interval-fuzzy two-stage integer programming and its application to flood-diversion planning

机译:混合区间模糊两阶段整数规划及其在洪水调度中的应用

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Innovative prevention, adaptation, and mitigation approaches as well as policies for sustainable flood management continue to be challenges faced by decision-makers. In this study, a mixed interval-fuzzy two-stage integer programming (IFTIP) method is developed for flood-diversion planning under uncertainty. This method improves upon the existing interval, fuzzy, and two-stage programming approaches by allowing uncertainties expressed as probability distributions, fuzzy sets, and discrete intervals to be directly incorporated within the optimization framework. In its modelling formulation, economic penalties as corrective measures against any infeasibilities arising because of a particular realization of the uncertainties are taken into account. The method can also be used for analysing a variety of policy scenarios that are associated with different levels of economic penalties. A management problem in terms of flood control is studied to illustrate the applicability of the proposed approach. The results indicate that reasonable solutions have been generated. They can provide desired flood-diversion alternatives and capacity-expansion schemes with a minimized system cost and a maximized safety level. The developed IFTIP is also applicable to other management problems that involve uncertainties presented in multiple formats as well as complexities in policy dynamics.
机译:创新的预防,适应和减缓方法以及可持续洪水管理政策仍然是决策者面临的挑战。在这项研究中,发展了一种混合区间模糊两阶段整数规划(IFTIP)方法,用于不确定情况下的洪水分流规划。通过允许将表示为概率分布,模糊集和离散区间的不确定性直接纳入优化框架,此方法改进了现有的区间,模糊和两阶段编程方法。在其建模公式中,考虑了经济处罚,作为对由于不确定性的特殊实现而引起的任何不可行性的纠正措施。该方法还可以用于分析与不同程度的经济处罚相关的各种政策方案。研究了防洪方面的管理问题,以说明该方法的适用性。结果表明已经产生了合理的解决方案。他们可以以最小的系统成本和最大的安全级别提供所需的洪水分流替代方案和容量扩展方案。制定的IFTIP也适用于其他管理问题,这些问题涉及以多种格式表示的不确定性以及政策动态的复杂性。

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