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Optimal design of low-voltage distribution networks for CO2 emission minimisation. Part I: model formulation and circuit continuous optimisation

机译:低压配电网的优化设计,可最大程度减少CO2排放。第一部分:模型制定和电路连续优化

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摘要

This study presents a novel model and relevant applications for optimal environmental design of distribution networks. The presentation of the concepts is divided into two papers, of which this paper represents Part I. The proposed methodology is based on a trade-off between emission embodied in the circuit and emissions related to operational losses. Hence, the CO2 emission minimisation problem is developed and analysed for a single circuit in terms of continuous optimisation, and is solved in closed form. This leads to establish a continuous optimal environmental capacity for distribution circuits, and allows identification of the key parameters involved in the analysis. Numerical applications for typical low-voltage (LV) cables used in the UK highlight some numerical aspects of the discussed design. Sensitivity analyses are also run in order to test the robustness of the results found, and to estimate how the design characteristics could change in the presence of different generation mixes. The analyses are completed in Part II, illustrating the application of the model
机译:这项研究为配电网的最佳环境设计提出了一种新颖的模型及其相关应用。有关概念的介绍分为两篇,其中篇为第一篇。所提出的方法基于电路中体现的排放与与运营损失相关的排放之间的权衡。因此,就连续优化而言,针对单个电路开发并分析了CO2排放最小化问题,并以封闭形式解决了该问题。这将为配电线路建立连续的最佳环境容量,并允许识别分析中涉及的关键参数。在英国使用的典型低压(LV)电缆的数值应用突出了所讨论设计的某些数值方面。还进行了灵敏度分析,以测试发现的结果的稳健性,并估计在不同代混合气的存在下设计特性如何变化。第二部分完成了分析,说明了模型的应用

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