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On Achieving Fairness in the Allocation of Scarce Resources: Measurable Principles and Multiple Objective Optimization Approaches

机译:论稀缺资源分配中的公平性:可测原理和多目标优化方法

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Equity principles are embedded within a multiple objective framework for obtaining optimal solutions to a generic allocation problem, such as the fair distribution of water, energy, or other types of key resources among users in society. Because of the great import of fresh water as a scarce and diminishing resource within and among many nations of the world, the equity concepts are used in the allocation of water rights and subsequent water transfers or trades among users to improve the economic efficiency of water utilization. More specifically, water allocation is formulated as a generalized multiple objective problem and then the measurable fairness principles are used in the development of two approaches for equitable water rights allocation. In particular, the proposed priority-based maximal multiperiod network flow programming method has a social aggregation function satisfying the monotonicity and priority principles, and thus is a priority equitable allocation approach. The lexicographic minimax water shortage ratios method, which satisfies the principles of monotonicity, impartiality, and equitability, generates perfectly equitable solutions. The priority ranks and weights used in the two proposed approaches, respectively, are designed to achieve fair treatment of all the competitors for access to limited water resources and constitute important parameters. The capabilities of the approaches are tested and demonstrated in applications to the Aral Sea Basin in Central Asia and the South Saskatchewan River Basin in Western Canada.
机译:公平原则被嵌入到多目标框架中,以获取一般分配问题的最佳解决方案,例如社会用户之间水,能源或其他类型关键资源的公平分配。由于世界上许多国家之内和之间大量进口的淡水作为一种稀缺和减少的资源,公平概念被用于水权的分配以及随后用户之间的水的转移或交易,以提高水利用的经济效率。 。更具体地说,将水分配公式化为广义的多目标问题,然后将可衡量的公平原则用于制定两种公平分配水权的方法。特别地,所提出的基于优先级的最大多周期网络流编程方法具有满足单调性和优先级原理的社交聚合功能,因此是一种优先级公平分配方法。满足单调性,公正性和公平性原理的字典极小值最大缺水率方法可以生成完全公平的解决方案。两种提议方法中分别使用的优先级和权重旨在实现公平对待所有竞争者以获取有限的水资源,并构成重要参数。这些方法的功能已在中亚咸海盆地和加拿大西部萨斯喀彻温省南部流域的应用中进行了测试和演示。

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