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Impacts of EVs on power system operation: Guangdong case, China

机译:EVS对电力系统运行的影响:中国广东案

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In addition to reduce oil consumption and pollution emissions, electric vehicles (EVs) show great potential for the power system as flexible load. For this reason, it provokes our interest to investigate the extent to which EVs could contribute to the power system management from the power system operator's perspective. To achieve this goal, a unit commitment (UC) model for the power system operation that considers EVs charging is used. A case study in Guangdong province is carried out to quantify the impact of EVs in terms of generation mix by fuel type, demand profiles with EVs, variable generation cost of the system, and power purchase cost for grid companies. Result shows that in an economic dispatch context, controlled charging could reduce the variable generation cost, and the purchase cost for grid companies. At the meantime, the high coal consumption due to controlled charging can be observed, which conflicts with the low-carbon electricity transition policy in China. In addition, the controlled charging reduces the peak load by 5.77% compared with uncontrolled charging, when there is 2 Million EVs. While the impact of control charging on reducing peak load is uncertain yet, the grid companies probably face peak load challenges in both controlled and uncontrolled charging when there is high penetration level of EVs.
机译:除了降低石油消耗和污染排放外,电动车辆(EVS)都表现出电力系统的巨大潜力作为柔性负载。因此,它引起了我们的兴趣,以调查EVS从电力系统运营商的角度贡献电力系统管理的程度。为了实现这一目标,使用了考虑EVS充电的电力系统操作的单位承诺(UC)模型。在广东省采取案例研究,以通过燃料型,具有EVS,变量成本的需求谱,电网公司的电力购买成本来量化EV的影响。结果表明,在经济调度背景下,受控充电可以降低变量成本,以及网格公司的购买成本。与此同时,可以观察到由于受控充电引起的高煤消耗,这与中国的低碳电转换政策发生冲突。此外,当有200万EVS时,受控充电与不受控制的充电相比将峰值负荷降低5.77%。虽然控制充电对降低峰值负荷的影响尚不确定,但电网公司可能在电源高渗透水平时面临控制和不受控制的充电中的峰值负荷挑战。

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