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Fuzzy Inexact Mixed-Integer Semiinfinite Programming for Municipal Solid Waste Management Planning

机译:城市固体废物管理规划的模糊不精确混合整数半无限规划

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摘要

Based on the concept of functional intervals, fuzzy inexact mixed-integer semiinfinite programming (FIMISIP) method is developed for municipal solid waste management planning. The method allows the uncertainties in parameters expressed as fuzzy, interval, and functional interval numbers to be directly communicated into the programming problem. The FIMISIP problem is solved by dividing it into two interactive semiinfinite programming (SIP) subproblems. Solutions reflecting the inherent uncertainties can then be generated by combining the SIP solutions into a set of decision intervals. The method is applied to a municipal solid waste management planning system for demonstrating its effectiveness in dealing with uncertain and dynamic complexities. Compared to the previous inexact programming methods, FIMISIP has the advantages as follows: (1) the dynamic complexity can be addressed by introducing the functional-interval parameters associated with time into the programming problem; (2) the FIMISIP solutions provide a set of flexible waste-management schemes to the decision makers; and (3) the FIMISIP solutions are more reliable than those from the previous ILP ones since they can be “really” optimal regardless of how the parameters vary with time within the time period. While this study is a first attempt to solve solid waste management issues under complex uncertainties, the method can be extended to other environmental management planning problems.
机译:基于功能区间的概念,提出了模糊不精确混合整数半无限规划(FIMISIP)方法用于城市生活垃圾管理规划。该方法允许将表示为模糊,区间和功能区间数的参数中的不确定性直接传达给编程问题。通过将FIMISIP问题分为两个交互式半无限编程(SIP)子问题来解决。然后,可以通过将SIP解决方案组合为一组决策间隔来生成反映固有不确定性的解决方案。该方法应用于市政固体废物管理计划系统,以证明其在处理不确定性和动态复杂性方面的有效性。与以前的不精确编程方法相比,FIMISIP具有以下优点:(1)通过将与时间相关的功能间隔参数引入编程问题中,可以解决动态复杂性; (2)FIMISIP解决方案为决策者提供了一套灵活的废物管理方案; (3)FIMISIP解决方案比以前的ILP解决方案更可靠,因为无论参数在时间段内如何随时间变化,它们都是“真正的”最佳选择。尽管本研究是解决复杂不确定性下固体废物管理问题的首次尝试,但该方法可以扩展到其他环境管理计划问题。

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