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Economic Feasibility Evaluation of the Use of Wind Microgenerator in Multifamily Building in Southern Brazil
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作者 Lauro AndréRibeiro Marcos Vinícius de Lima +2 位作者 Wilson Levy Braga da Silva Neto Marília Marton Correia Thaísa Leal da Silva 《Journal of Civil Engineering and Architecture》 2022年第10期513-518,共6页
There is a growing worldwide interest in the potential of using existing buildings to generate their own energy as a way to alleviate problems related to the exhaustion of energy resources,environmental degradation an... There is a growing worldwide interest in the potential of using existing buildings to generate their own energy as a way to alleviate problems related to the exhaustion of energy resources,environmental degradation and the constant increase in energy-related prices.Among the distributed electricity generation solutions on the market today,wind energy can be a solution for many existing city buildings worldwide.Thus,the objective of this article is to investigate the economic viability of generating wind energy in a multifamily building located in Southern Brazil,(city of Passo Fundo),seeking to supply the condominium electric energy for the period of one year of consumption with a renewable source.To this end,the energy demand of the condominium and the energy generation of the wind turbine were taken into account to calculate the economic viability of the system.The results showed a positive NPV(net present value)demonstrating the economic feasibility of carrying out such an investment.The IRR(internal rate of return)was 15.22%and the return on investment(payback)occurs in 7.88 years. 展开更多
关键词 Wind energy MICROGENERATION renewable energy economic analysis
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Multi-conductor Line Models for Harmonic Load-flow Calculations in LV Networks with High Penetration of PV Generation 被引量:2
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作者 Fernando M.Camilo M.E.Almeida +1 位作者 Rui Castro V.Fernao Pires 《Journal of Modern Power Systems and Clean Energy》 SCIE EI CSCD 2022年第5期1288-1301,共14页
Low-voltage(LV) distribution networks are unbalanced and present loads with nonlinear behavior, which introduce harmonics in the networks. The predictable increase in photovoltaic microgeneration(PV μG) accentuates t... Low-voltage(LV) distribution networks are unbalanced and present loads with nonlinear behavior, which introduce harmonics in the networks. The predictable increase in photovoltaic microgeneration(PV μG) accentuates this unbalanced characteristic, as well as poses new technical problems,namely voltage rise and reverse power flow. To accurately account for the distributed PV and loads in the LV network, unbalanced three-phase power flow algorithms should be utilized,where different approaches may be used to represent lines with various degrees of accuracy. The more accurate algorithm considers the electromagnetic coupling between the line conductors,whereas the simpler algorithm represents each conductor of the line as a single-phase line with pure resistive behavior. This paper aims to analyze the influence of the line model on the load flow in a highly unbalanced LV network with a high penetration of PV production, and considers the impact of the harmonics produced by nonlinear loads. Based on the results obtained,it is possible to identify the most suitable model to be used, depending on the study to be performed. Different scenarios of PV generation and loads are addressed in this paper. 展开更多
关键词 Line model nonlinear loads photovoltaic microgeneration unbalanced distribution network
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