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Multi-sources energy plants location using goal-programming and flow control analysis approach

机译:使用目标编程和流量控制分析方法的多源能量设备位置

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This paper deals with optimizing the location of multi-sources power plants, using renewable energies, based on a given statistical data and satisfying economic, environmental and social criteria. In the classical version of the goal-programming model, the different types of plants should be located in order to minimize the total deviations from predefined goals; keeping in mind that the parameters are place dependent. However, this paper shows that relaxing the constraints leads to more feasible solutions and improves some criteria. We introduce place-dependent parameters for placing the different power plants. Since different types of plants can be positioned in each location, we combined the goal-programming model with a flow control approach to evaluate the location frequencies distribution of power plants to each position in order to identify a characteristic energy map. The obtained results are based on numerical experiments inspired from the literature. The results show the effectiveness and the efficiency of the proposed approach.
机译:本文根据给定的统计数据和满足经济,环境和社会标准,优化了使用可再生能源的多源发电厂的位置。在目标编程模型的经典版本中,应定位不同类型的工厂,以最大限度地减少预定目标的总偏差;请记住,参数取决于位置。然而,本文表明,放松约束导致更可行的解决方案并提高了一些标准。我们介绍了依赖于不同的发电厂的参数。由于不同类型的植物可以定位在每个位置,因此我们将目标编程模型与流量控制方法组合以评估发电厂的位置频率分布到每个位置,以便识别特征能量图。获得的结果基于来自文献的数值实验。结果表明了所提出的方法的有效性和效率。

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