与光伏电站合作的恒功率充电站

Dušan Medved’, M. Kolcun, J. Király, Olexandr Shavolkin, I. Shvedchykova
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引用次数: 0

摘要

本文对电动汽车电池充电问题进行了分析。电动汽车充电目前从电商、网络运营商、电力生产商的角度来看都是相关的,而从用户的角度来看,它只是在尽可能短的时间内消耗所需的电量。因此,电力的消费者是电力系统中的一个随机元素,它会在网络中造成各种不利条件,如电压不对称,电力负荷突然(电压下降),在充电设备不适当的情况下,甚至会产生更高的谐波。由于电动汽车充电的这种现象或多或少是随机的(用户以不同的时间和数量给电池充电),因此应该考虑电池管理,使负载在设定的间隔内持续运行,从而可以预测设置合适的能源和配置电源线,以确保尽可能少的损失。为此,在Matlab / Simulink环境中创建了一个交直流电池白天充电恒定值的模型,同时考虑一个月中每天充电电流的不同值。为了补充电力,选择了光伏源作为辅助电源,这将配电网络的电力消耗减少了大约五分之一的电力。最后对模拟结果进行了评价。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Charging Stations with Constant Power in Cooperation with a Photovoltaic Power Plant
This paper deals with the analysis of battery charging for electric vehicles. The charging of electric vehicles is currently relevant from the point of view of the electricity supplier, the network operator, the electricity producer, while from the user’s point of view it is only about the consumption of electricity in the shortest possible time and in the required amount. For this reason, the consumer of electricity is a random element in the electricity system, which can cause various adverse conditions in the network, such as voltage asymmetry, sudden power loads (voltage drops), and in the case of inappropriate charging equipment, even higher harmonics. Since such a phenomenon of electric vehicle charging is more or less random (the user charges the batteries at different times and amounts), it is therefore appropriate to think about battery management so that the load behaves constantly at a set interval, so that it is possible to predict the setting of suitable energy sources and to conFigure the power line so as to ensure the least possible losses. For this purpose, a model of AC and DC battery charging with a constant value during the day was created in the Matlab / Simulink environment, while a different value of the charging current was considered for each day of a month. To supplement the power, a photovoltaic source was chosen as an auxiliary source, which reduced the consumption of electricity from the distribution network by approximately one fifth of the power. The results of the simulations were evaluated in conclusion.
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