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The smart transition of Power Transmission Network needed for the sustainable development of Bucharest City

机译:布加勒斯特城市可持续发展所需电力传输网络的智能转换

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Large cities around the world continue to grow larger. This is also the case of Bucharest, the capital city of Romania and one of the largest and most densely populated locations in Eastern Europe. In this article authors present an overview of the development of Bucharest as the largest electricity consumer amongst the Romanian municipalities and analyse possible solutions for the refurbishment of the HV (High Voltage) grid. This process needs to help the city development and its transition to a Smart City. At first authors present the strategy of local authorities for improving the living standard and decrease the environmental pollution. The impact of this strategy on the electrical energy demand is further analysed. Possible technologies are presented for substations and electrical lines starting from the current situation of the transmission network. All these can contribute to a decrease of the environmental impact and to an increase in the continuity of the power supply. Technical and economical evaluation of the refurbished grid is further presented along with a sensitivity analysis. The evaluation of the investment is made by taking into consideration the demand forecast. Lines and transformers are sized and chosen with the best available technology. For the economic analysis authors used criteria accepted by funding sources, banks especially, such as NPV and IRR. The sensitivity of the project economics is tested and discussed. As conclusions authors present the environmental benefits of gradually changing the technology used for electricity transmission in a large city such as Bucharest, mainly regarding land occupancy with switchgear and line routes and soil pollution.
机译:世界各地的大城市继续增长。这也是布加勒斯特,罗马尼亚首都城市的案例,以及东欧的最大和最稠密的地点之一。在本文中,提交人概述了布加勒斯特作为罗马尼亚市中心最大的电力消费者的发展,并分析了对HV(高压)网格的翻新的可能解决方案。这个过程需要帮助城市发展及其向智能城市的过渡。在第一作者提出了地方当局的战略,以改善生活水平,减少环境污染。进一步分析了这种策略对电能需求的影响。从传输网络的当前情况开始提供可能的技术。所有这些都可以有助于降低环境影响,并增加电源的连续性。进一步提出了翻新网格的技术和经济评估以及灵敏度分析。通过考虑到需求预测,对投资进行评估。线路和变压器的大小和选择,并选择了最佳技术。对于经济分析,作者使用资金来源接受的标准,特别是NPV和IRR等银行。测试和讨论了项目经济学的敏感性。结论提交人提出了逐步改变用于布加勒斯特等大城市电力传输技术的环境的效益,主要是与开关设备和线路途径和土壤污染的土地占用。

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