工作场所电动汽车充电站设计与控制对电网冲击的影响

A. Starosta, N. Munzke, M. Hiller
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引用次数: 0

摘要

随着电动汽车(EV)的日益普及,由于充电需求的不确定性,电网受到了很大的影响,特别是当分布式可再生能源(如光伏系统(PV))的高度普及时。除了利用电池储能系统(BESS)对电力负荷进行智能控制等解决方案外,电动汽车充电基础设施的优化设计也至关重要。模拟分析可以帮助评估成本、自给自足、自用和电网影响指标。然而,到目前为止,还没有对电动汽车充电站的电网影响指标进行评估。本文研究了一种连接到光伏阵列、BESS和电网的直流耦合电动汽车充电基础设施。该系统是针对工作环境进行评估的。充电基础设施包括可变数量的交流和直流充电点。针对光伏、BESS和并网逆变器不能覆盖负荷的情况,提出了一种负荷转移算法。在此基础上,提出了一种使自耗最大化的充电算法。以有和无充电策略的经济最优作为参照系,评估电网逆变器和电池的尺寸以及充电点数量对电力成本和电网影响指标的影响。结果表明,根据德国的季节,15°倾斜的南向光伏无法覆盖11月至2月之间的负荷,并且无论充电点数量和电池大小如何,都取决于电网。在自我消耗最大化充电策略的帮助下,可以显著减少对电网的影响。充电策略比组件尺寸的变化具有更积极的影响。BESS可以略微增加充电策略的积极影响,但在考虑的场景中没有显示出经济优势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of a workplace electric vehicle charging station's design and control on grid impact
With the increasing adoption of electric vehicles (EV), the electricity grid is majorly impacted due to its uncertain charging requirements, especially when there is a high penetration of distributed renewable energy sources such as photovoltaic systems (PV). Along with solutions including intelligent control of electric load with a battery energy storage system (BESS), an optimal design of the EV charging infrastructure is vital. Simulative analysis could help to evaluate the costs, self-sufficiency, self-consumption and grid impact indicators. However, grid impact indicators have not been evaluated for EV charging stations so far. This paper deals with a DC-coupled EV charging infrastructure that is connected to a PV array, BESS and the electricity grid. The system is evaluated for a workplace environment. The charging infrastructure includes a variable number of AC and DC charging points. A load shifting algorithm is introduced in case the PV, BESS and grid inverter cannot cover the load. Furthermore, a charging algorithm which maximizes self-consumption is introduced. Economic optima with and without the charging strategy are used as reference systems for evaluating the grid inverter's and battery's sizes as well as number of charging points influencing electricity costs and grid impact indicators. The results show that according to seasons in Germany, the southerly oriented PV of 15° tilt cannot cover the load between November and February and depends on the grid irrespective of the number of charging points and battery size. With the help of a selfconsumption maximizing charging strategy, the grid impact can be significantly reduced. The charging strategy has a far more positive influence than the variation of component sizes. A BESS can slightly increase the charging strategy's positive influence but has not shown economical advantage in the considered scenarios.
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