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The Photovoltaic Generation and its Energy Contribution and Demand Shifting at the Center Headquarters of the Federal University of Technology - Paraná - Campus Curitiba

机译:联邦理工大学中心总部的光伏发电及其能量贡献与需求转移-巴拉那-库里提巴校园

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Distributed photovoltaic (PV) generation is characterized by the application of several small power plants in urban centers. This form of energy deserves special mention due to the possibility of installation in existing areas such as roofs and facades. Thus, the implementation of these systems represents positive modifications of the urban scenario, with the adhesion of PV modules, presenting much smaller social and environmental impacts than that of large conventional plants. In this sense, this study aims at analyzing the demand and consumption curves of the Center headquarters buildings of Federal University of Technology - Paraná (UTFPR) in Curitiba, by applying the COPEL’s CAS Hemera platform, in order to determine the potential for implementation of grid-connected photovoltaic systems in this premise, because they allow the cost reductions in electric power. The first UTFPR’s grid-connected photovoltaic system was introduced in December 2011, at the Center’s headquarters, in one of the blocks of the university, which by the end of 2016 generated a total of 11.67 MWh of electricity. This paper proposes an expansion scenario for the existing grid-connected photovoltaic system, using the available coverage showing the shifting or reduction of energy demand peaks and the energy contribution to UTFPR's Center headquarters.
机译:分布式光伏(PV)发电的特点是在城市中心使用了一些小型发电厂。由于可以在现有区域(例如屋顶和外墙)中安装这种能源,因此值得特别提及。因此,这些系统的实施代表了对城市情景的积极修改,并采用了光伏组件,与大型传统电站相比,对社会和环境的影响要小得多。从这个意义上讲,本研究旨在通过应用COPEL的CAS Hemera平台来分析位于库里提巴的巴拉那联邦技术大学中心总部大楼的需求和消耗曲线,从而确定实施网格的潜力在此前提下连接光伏系统,因为它们可以降低电力成本。 UTFPR的第一个并网光伏发电系统于2011年12月在该大学的一个街区的中心总部投入使用,到2016年底共产生了11.67 MWh的电力。本文利用现有覆盖范围提出了现有的并网光伏系统的扩展方案,该覆盖范围显示了能源需求高峰的转移或减少以及对UTFPR中心总部的能源贡献。

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