采用独立光伏太阳能充电站充电的城市电动自行车能效及其符合厄瓜多尔电网法规的研究。Arcernnr - 2002 /20

IF 0.4 Q4 ENGINEERING, MULTIDISCIPLINARY Ingenius-Revista de Ciencia y Tecnologia Pub Date : 2023-01-01 DOI:10.17163/ings.n29.2023.04
Vinicio Iñiguez-Morán, Edisson Villa-Ávila, Danny Ochoa-Correa, Ciro Larco-Barros, Rodrigo Sempertegui-Álvarez
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引用次数: 2

摘要

电动自行车是一种新兴的可持续交通工具,如果大规模采用,它们可以帮助应对全球城市中心人类出行的挑战。在厄瓜多尔的昆卡,当地政府修建了长达13.47公里的自行车道,连接各战略点,以促进和鼓励可持续的交通。然而,大规模有效实施电动汽车战略会对电网产生影响,如能源需求的增加以及由于电池充电电流特征的谐波失真而可能导致的能源质量下降。本研究旨在通过在昆卡大学微电网实验室实施的独立太阳能光伏充电站充电的城市电动自行车的能源效率研究,获得评估此类影响的主要输入。该方法包括电池充电制度的实验表征,车辆的能源效率计算,以及其符合厄瓜多尔电网代码的评估。Arcernnr - 2002 /20。结果表明,电池的充电器执行德国法规标准化的充电制度,在4.82小时内提供92%的电量。电动自行车的计算平均能源效率为2.18千瓦时/100英里或73.77米/小时,燃油经济性为1545.1英里/加仑。最后,充电电流的前四个奇次谐波分量的幅度和总谐波畸变超过了现行电网规范所规定的限制。
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Study of the Energy Efficiency of an Urban E-Bike Charged with a Standalone Photovoltaic Solar Charging Station and its Compliance with the Ecuadorian Grid Code No. ARCERNNR – 002/20
E-bikes are an emerging sustainable means of transportation, if adopted massively, they can help face the challenges of human mobility in urban centers worldwide. In Cuenca, Ecuador, the local government built cycle routes (13.47 km) connecting strategic points to facilitate and encourage sustainable mobility. However, the effective implementation of the electromobility strategies at a large scale entails impacts on the power grid, like the increase in the energy demand and the possible decrease of the energy quality due to the harmonic distortion that characterizes the battery's charging current. This research aims to obtain a primary input to evaluate such impacts through an energy efficiency study of an urban e-bike charged by a standalone solar photovoltaic charging station implemented in the Microgrid Laboratory of Universidad de Cuenca. The methodology includes the experimental characterization of the battery's charging regime, the vehicle's energy efficiency calculation, and the evaluation of its compliance with Ecuadorian grid code No. ARCERNNR – 002/20. Results show that the battery's charger performs a charging regime standardized by German regulations, delivering 92% of charge in 4.82 hours. The e-bike's calculated average energy efficiency is 2.18 kWh/100 miles or 73.77 m/Wh, and a fuel economy of 1545.1 MPGe. Finally, the magnitude of the first four odd harmonic components and the total harmonic distortion of the charging current exceeds the limits established by the grid code in force.
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来源期刊
Ingenius-Revista de Ciencia y Tecnologia
Ingenius-Revista de Ciencia y Tecnologia ENGINEERING, MULTIDISCIPLINARY-
CiteScore
0.90
自引率
0.00%
发文量
11
审稿时长
12 weeks
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