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Combining scenario-based multi-objective optimized decision-making with a spatial division strategy: a case study of Yongding River, Beijing, China

机译:将基于场景的多目标优化决策与空间划分策略相结合:以北京永定河为例

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摘要

To solve the problems that usually arise in large-scale space-optimized decision-making, such as complexity, multiple objectives, difficulties in process quantification, and time-consuming computation, this paper proposes a scenario-based, multi-objective, spatially optimized decision-making method. In line with the principle of first optimizing through spatial division into levels, and then optimizing by integration, the object of decision-making was divided in space according to its spatial characteristics. By comprehensively accounting for the general and specific conditions of the different spatial divisions that were thus created-such as decision-making objectives, global decision-making variables, local decision-making variables, global constraints, and local constraints-a framework for multi-objective spatially optimized decision-making was constructed. Specifically, both the global generality and local individuality of the object of decision-making can be taken into account through spatial division. Thus, the goal of progression from the local optimum to the global optimum can be reached. This framework was then applied to ecological restoration of the Yongding River in Beijing, China. The application indicated that the proposed approach and procedure adopted in this study are rational, feasible, and practical, showing that there existed a significant difference of the total numbers of the scenario decision-making schemes between the two cases (with and without applying the proposed framework) and considerably improving the efficiency of large-scale decision-making practices.
机译:为了解决大型空间优化决策中通常会出现的问题,例如复杂性,多目标,过程量化困难和耗时的计算,本文提出了一种基于场景,多目标,空间优化的方案决策方法。遵循先通过空间划分将各个层次进行优化,然后再通过集成进行优化的原则,根据决策对象的空间特征将其划分为多个空间。通过综合考虑由此产生的不同空间分区的一般和特定条件(例如决策目标,全局决策变量,局部决策变量,全局约束和局部约束),形成一个多框架建立了客观的空间优化决策。具体而言,可以通过空间划分来考虑决策对象的全局性和局部性。因此,可以达到从局部最优到全局最优的发展目标。然后将该框架应用于中国北京永定河的生态修复。该申请表明,本研究中采用的拟议方法和程序是合理,可行和实用的,表明在两种情况下,情景决策方案的总数存在显着差异(无论是否采用拟议的方案框架),并大大提高了大型决策实践的效率。

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