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Wind and solar integration with plug-in electric vehicles smart charging strategies

机译:风能和太阳能与插电式电动汽车的智能充电策略集成

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Combining large penetration of Plug-in Electric Vehicles (PEVs) and generation from Renewable Energy Sources (RES) seems a promising solution for energy cost saving and emission reduction. Indeed, RES generation increases instability grid problems due to its intermittency and lack of correlation with final energy usage. But the energy storage of the PEVs connected to the grid, controlled with smart charging and generating strategies, can compensate these uncertainties: energy surplus at low demands and high RES production (strong wind or sunshine) can be returned from PEVs to the grid at larger demand periods, and even provide regulation services. This paper analyses the combined impact of PEVs and RES penetration in the current Spanish power system with a detailed hydro-thermal Unit Commitment (UC) model for energy and reserve. Different charging strategies (from plug-and-charge to V2G with regulation) and wind and solar power penetration are tested with a full year simulation with weekly water management. Simulations show how PEVs smart charging strategies adapt PEVs operation to the existing generation structure, contributing efficiently to higher RES penetration rates, decreasing emissions and system operation costs.
机译:将插电式电动汽车(PEV)的普及率与可再生能源(RES)的发电相结合,似乎是节省能源成本和减少排放的有前途的解决方案。确实,RES的生成由于其间歇性以及与最终能源使用之间的缺乏相关性而增加了电网不稳定的问题。但是,通过智能充电和发电策略控制的并网PEV的储能可以弥补这些不确定性:低需求和高RES产量(强风或日照)下的能量过剩可以从PEV返回更大的电网需求期间,甚至提供监管服务。本文通过详细的能源和储备水热机组承诺(UC)模型,分析了PEV和RES渗透在当前西班牙电力系统中的综合影响。通过每周水管理的全年模拟,测试了不同的充电策略(从即插即用到具有法规的V2G)以及风能和太阳能的渗透率。仿真显示了PEV的智能充电策略如何使PEV的运行适应现有的发电结构,从而有效地提高了RES的普及率,减少了排放并降低了系统运营成本。

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