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首页> 外文期刊>E3S Web of Conferences >Demand-side Management Programs – A joint environmental protection action. Case study: The lighting system in the Campus of the University POLITEHNICA of Bucharest
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Demand-side Management Programs – A joint environmental protection action. Case study: The lighting system in the Campus of the University POLITEHNICA of Bucharest

机译:需求方管理计划–一项联合环境保护行动。案例研究:布加勒斯特政治大学校园内的照明系统

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摘要

The current development of Smart Grids, combined with the pressure enforced by national legislation as a direct effect of the 2012/27/EU and the 2018/844/EU Directives and the ever-growing energy demand lead to a new set of challenges for both the end-users and the utility companies, under the form of optimizing the EPIs (Energy Performance Indicators), reducing the Environmental Impact and flattening the Power Demand Curve. In this paper, the economical viability and the potential environmental impact reduction obtained by implementing a DSM (Demand–Side Management) program in the Campus of the University POLITEHNICA of Bucharest were analysed. The energy boundary consisted of all the 26 Student Dorms and the main Significant Energy Use) consisted of the lighting system. Four different scenarios were conceived, taking into account the initial investment and the energy savings sharing between the end-user and the Utility Company. Based on these scenarios, a technical-economic model is presented. Using the data gathered on-site and the DSM program mode, relevant results were obtained and a development solution for such projects was proposed. In the final part of the paper, the predicted Environmental Impact Reduction was quantified and analysed, under the form of the Carbon Footprint generated, respectively avoided by implementing the most economically efficient DSM program development solution.
机译:当前智能电网的发展,再加上国家法规作为2012/27 / EU和2018/844 / EU指令的直接影响所施加的压力,以及不断增长的能源需求,给这两个领域带来了新的挑战最终用户和公用事业公司以优化EPI(能源绩效指标),减少对环境的影响和扁平化电力需求曲线的形式。在本文中,分析了在布加勒斯特POLITEHNICA大学校园内实施DSM(按需管理)程序所获得的经济可行性和对环境的潜在影响。能源边界由所有26个学生宿舍组成,主要的重要能源使用由照明系统组成。考虑到初始投资以及最终用户与公用事业公司之间的节能共享,设想了四种不同的方案。基于这些情况,提出了一种技术经济模型。利用现场收集的数据和DSM程序模式,获得了相关结果,并提出了针对此类项目的开发解决方案。在本文的最后部分,以产生的碳足迹的形式对预测的减少环境影响进行了量化和分析,这是通过实施最经济高效的DSM程序开发解决方案分别避免的。

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