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ITOM: an interval-parameter two-stage optimization model for stochastic planning of water resources systems

机译:ITOM:水资源系统随机规划的区间参数两阶段优化模型

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摘要

Planning of water resources systems is often associated with many uncertain parameters and their interrelationships are complicated. Stochastic planning of water resources systems is vital under changing climate and increasing water scarcity. This study proposes an interval-parameter two-stage optimization model (ITOM) for water resources planning in an agricultural system under uncertainty. Compared with other optimization techniques, the proposed modeling approach offers two advantages: first, it provides a linkage to predefined water policies, and; second, it reflects uncertainties expressed as probability distributions and discrete intervals. The ITOM is applied to a case study of irrigation planning. Reasonable solutions are obtained, and a variety of decision alternatives are generated under different combinations of water shortages. It provides desired water-allocation patterns with respect to maximum system benefits and highest feasibility. Moreover, the modeling results indicate that an optimistic water policy corresponding to higher agricultural income may be subject to a higher risk of system-failure penalties; while, a too conservative policy may lead to wastage of irrigation supplies.
机译:水资源系统的规划通常与许多不确定的参数相关,并且它们之间的相互关系很复杂。在气候变化和缺水加剧的情况下,水资源系统的随机规划至关重要。本研究提出了不确定性条件下农业系统水资源规划的区间参数两阶段优化模型(ITOM)。与其他优化技术相比,所提出的建模方法具有两个优点:首先,它提供了与预定义水政策的关联;以及其次,它反映了以概率分布和离散区间表示的不确定性。 ITOM用于灌溉计划的案例研究。获得了合理的解决方案,并且在缺水的不同组合下产生了各种决策选择。就最大的系统效益和最高的可行性而言,它提供了所需的水分配模式。此外,模型结果表明,与更高的农业收入相对应的乐观的水政策可能会遭受更高的系统故障处罚风险;同时,过于保守的政策可能会导致灌溉资源的浪费。

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