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Radial-Interval Linear Programming for Environmental Management under Varied Protection Levels

机译:径向间隔线性规划在不同保护水平下的环境管理

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摘要

In this study, a radial-interval linear programming (RILP) approach was developed for supporting waste management under uncertainty. RILP improved interval-parameter linear programming and its extensions in terms of input reasonableness and output robustness. From the perspective of modeling inputs, RILP could tackle highly uncertain information at the bounds of interval parameters through introducing the concept of fluctuation radius. Regarding modeling outputs, RILP allows controlling the degree of conservatism associated with interval solutions and is capable of quantifying corresponding system risks and benefits. This could facilitate the reflection of interactive relationship between the feasibility of system and the uncertainty of parameters. A computationally tractable algorithm was provided to solve RILP. Then, a long-term waste management case was studied to demonstrate the applicability of the developed methodology. A series of interval solutions obtained under varied protection levels were compared, helping gain insights into the interactions among protectionrnlevel, violation risk, and system cost. Potential waste allocation alternatives could be generated from these interval solutions, which would be screened in real-world practices according to various projected system conditions as well as decision-makers' willingness to pay and risk tolerance levels. Sensitivity analysis further revealed the significant impact of fluctuation radii of interval parameters on the system. The results indicated that RILP is applicable to a wide spectrum of environmental management problems that are subject to compound uncertainties.
机译:在这项研究中,开发了一种径向间隔线性规划(RILP)方法来支持不确定性下的废物管理。 RILP在输入合理性和输出鲁棒性方面改进了间隔参数线性编程及其扩展。从建模输入的角度来看,RILP可以通过引入波动半径的概念来解决区间参数范围内的高度不确定的信息。关于模型输出,RILP可以控制与区间解决方案相关的保守程度,并且能够量化相应的系统风险和收益。这可以促进系统可行性与参数不确定性之间相互作用关系的反映。提供了可处理的计算算法来解决RILP。然后,研究了一个长期废物管理案例,以证明所开发方法的适用性。比较了在不同保护级别下获得的一系列间隔解决方案,有助于深入了解保护级别,违规风险和系统成本之间的相互作用。可以从这些间隔解决方案中生成潜在的废物分配替代方案,这些方案将根据各种预计的系统条件以及决策者的支付意愿和风险承受能力在实际操作中进行筛选。灵敏度分析进一步揭示了区间参数波动半径对系统的重大影响。结果表明,RILP适用于各种可能受到复合不确定性影响的环境管理问题。

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  • 来源
    《Journal of the air & waste management association》 |2010年第9期|P.1078-1093|共16页
  • 作者单位

    Environmental Systems Engineering Program, Faculty of Engineering and Applied Science,University of Regina, Regina, Saskatchewan, Canada;

    rnS-C Research Academy of Energy and Environmental Studies, North China Electric Power University, Beijing, China;

    rnFaculty of Engineering, Dalhousie University, Halifax, Nova Scotia, Canada;

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