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Is the electric vehicle a solution for the wind power integration in the Portuguese power system?

机译:电动汽车是否是葡萄牙电力系统中风电集成的解决方案?

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The integration of Plug-in electric vehicles in the transportation sector has a great potential to reduce oil dependency, the GHG emissions and to contribute for the integration of renewable sources into the electricity generation mix. Portugal has a high share of wind energy, and curtailment may occur, especially during the off-peak hours with high levels of hydro generation. In this context, the electric vehicles, seen as a distributed storage system, can help to reduce the potential wind curtailments and, therefore, increase the integration of wind power into the power system. In order to assess the energy and environmental benefits of this integration, a methodology based on a unit commitment and economic dispatch is adapted and implemented. From this methodology, the thermal generation costs, the CO2 emissions and the potential wind generation curtailment are computed. Simulation results show that a 10% penetration of electric vehicles in the Portuguese fleet would increase electrical load by 3% and reduce wind curtailment by only 26%. This results from the fact that the additional generation required to supply the electric vehicles is mostly thermal. The computed CO2 emissions of the EV are 92 g CO2/kWh which become closer to those of some new ICE engines.
机译:插电式电动汽车在运输领域的整合具有巨大的潜力,可以减少对石油的依赖,减少温室气体排放,并有助于将可再生能源整合到发电组合中。葡萄牙的风能份额很高,并且可能会受到限制,特别是在非高峰时段,水力发电量很高。在这种情况下,被视为分布式存储系统的电动汽车可以帮助减少潜在的风力消耗,因此可以增加风力发电与电力系统的集成。为了评估这种整合的能源和环境效益,对基于单位承诺和经济调度的方法进行了调整和实施。通过这种方法,可以计算出热力发电成本,CO2排放量和潜在的风力发电削减量。仿真结果表明,葡萄牙车队中电动汽车普及率达到10%时,电力负荷将增加3%,风电削减仅减少26%。这是由于为电动车辆供电所需的额外发电大部分为热能。电动汽车的二氧化碳排放量计算为92 g CO2 / kWh,与某些新型ICE发动机的排放量更为接近。

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