并网光伏产消户支持卢旺达智慧城市发展:Ayabaraya村案例研究

Q3 Energy
Fabien Mukundufite, Jean D'amour Ni̇yonsaba, Jean Marie V. Bikorimana, Alexander KYARUZİ LUGATONA
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引用次数: 0

摘要

与其他地区一样,获得电力是卢旺达的重要目标之一。并网光伏(PV)产消市场部分可以为卢旺达的电力普及率做出贡献。并网光伏产电用户不仅提高了发电能力,而且生产了价格合理、可靠的电能。因此,本研究分析了小规模产消者与国家电网互联的可能性。此外,还分析了产消电网双向供电和产消电网双向供电的情况,以监测负荷的连续供电情况。该研究在卢旺达的Ayabaraya村进行,并分析了住宅、商业和工业消费的负荷概况。本研究利用光伏地理信息系统(PVGIS)截至2016年的气象数据,给出全球水平辐射和环境温度。从电网输入和输出的能量由连接的设备、光伏系统的容量和当时的可用辐照度决定。考虑了家庭能源管理系统(HEMS)、逆变器控制策略和产消负荷类型。仿真结果表明,每次可用辐照度小于30W/m2,低于并网逆变器的阈值功率,因此产消者从电网输入电力。当辐照度大于30W/m2时,产消者可优化自用,将剩余电量注入电网。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Grid-connected photovoltaics prosumers to support smart city development in Rwanda: A case study for Ayabaraya Village
Access to electricity is among the important targets in Rwanda as in other regions. The grid-connected photovoltaic (PV) prosumers market segment can contribute to the rate of access to electricity in Rwanda. Grid connected PV prosumers contribute in not only increasing electricity generation capacity but also producing affordable and reliable electrical energy. Therefore, the current research analyzes the possibilities of interconnection of small-scale prosumers with a national grid. In addition, the bidirectional flow of electricity either from prosumer grid and vice versa, aiming at monitoring the continuous power supply of the load is analyzed. The study is conducted in Ayabaraya village in Rwanda and the load profile for residential, commercial and industrial prosumers are analyzed. In this research, meteorological data from Photovoltaic Geographical Information System (PVGIS) up to 2016 is used to give global horizontal irradiation and ambient temperature. The amount of energy imported from and exported to the grid is determined by the connected appliances, the capacity of the PV system, and the amount of available irradiance at the time. The Home Energy Management System (HEMS), inverter control strategies, and prosumer load types are considered. The simulation reveals that available irradiance less than 30W/m2 at a time is below the grid-tie inverter's threshold power thus, the prosumer imports electricity from the grid. At irradiance larger than 30W/m2, the prosumer may optimize self-consumption and injects the surplus into grid.
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来源期刊
Journal of Energy Systems
Journal of Energy Systems Environmental Science-Management, Monitoring, Policy and Law
CiteScore
1.60
自引率
0.00%
发文量
29
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