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Modeling water allocating institutions based on Multiple Optimization Problems with Equilibrium Constraints

机译:基于均衡约束多重优化问题的配水机构建模

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Hydro-economic river basin models (HERBM) based on mathematical programming are conventionally formulated as explicit 'aggregate optimization' problems with a single, aggregate objective function. Often unintended, this format implicitly assumes that decisions on water allocation are made via central planning or functioning markets such as to maximize social welfare. In the absence of perfect water markets, however, individually optimal decisions by water users will differ from the social optimum. Classical aggregate HERBMs cannot simulate that situation and thus might be unable to describe existing institutions governing access to water and produce biased results for alternative ones. We propose a new solution format for HERBMs, based on Multiple Optimization Problems with Equilibrium Constraints (MOPEC), which allows, inter alia, to express spatial externalities resulting from asymmetric access to water use. This new problem format, as opposed to commonly used linear (LP) or non-linear programming (NLP) approaches, enables the simultaneous simulation of numerous 'independent optimization' decisions by multiple water users while maintaining physical interdependences based on water use and flow in the river basin. We show that the alternative problem format allows formulating HERBMs that yield more realistic results when comparing different water management institutions.
机译:传统上,将基于数学编程的水力经济流域模型(HERBM)公式化为具有单个总体目标函数的显式“总体优化”问题。这种格式通常是意料之外的,它隐含地假设水分配的决定是通过中央计划或有效市场做出的,例如,以实现最大的社会福利。然而,在没有完善的水市场的情况下,用水者的个人最优决策将不同于社会最优。经典的汇总HERBM无法模拟这种情况,因此可能无法描述管理用水的现有机构,并为其他机构带来有偏见的结果。我们基于带有平衡约束的多重优化问题(MOPEC),提出了一种针对HERBM的新解决方案格式,该格式尤其可以表达由于用水不对称导致的空间外部性。与常用的线性(LP)或非线性规划(NLP)方法相反,这种新的问题格式使多个用水者可以同时模拟众多“独立优化”决策,同时保持基于用水量和流量的物理相互依赖性。流域。我们表明,替代性问题格式允许制定HERBMs,当比较不同的水管理机构时,它们会产生更现实的结果。

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