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Efficient integration of demand response and plug-in electrical vehicle in microgrid: Environmental and economic assessment

机译:高效集成微普林中需求响应和插入电气车辆:环境与经济评估

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摘要

The microgrid has become a promising area to mitigate multiple challenges of the power system, resulting from renewable energy integration, climate change, as well as economic issues. However, the integration of flexible emerging technologies in microgrid operation to enhance the efficiency of energy supply, as well as environmental and economic challenges are urgently needed. Motivated by these challenges, this paper elaborates on the two-stage multi-objective optimization model for optimal scheduling of microgrid. The demand response program based on the time of use model, and plug-in electric vehicles have been integrated into the microgrid to contribute in economic and environmental goals. The proposed model extends the realistic EVs model based on the Wohler curve and AC-power flow equations. The proposed model is exposed to a wide range of random parameters, including wind output, load, price, and EVs' behaviours. To handle the uncertainties, and solving problem, scenario-based stochastic and weighted sum based on fuzzy decision-making strategies are respectively applied. The proposed model is tested on the 33-bus microgrid and examined for different cases. Results prove the impacts of the efficient integration of demand response, and a plug-in electric vehicle in the reducing of operational cost, and emission by 3.57% and 3.4%, respectively.(c) 2021 Elsevier Ltd. All rights reserved.
机译:微电器已成为缓解电力系统的多项挑战的有希望的区域,从而产生可再生能源集成,气候变化以及经济问题。然而,迫切需要将灵活的新兴技术集成在微电网运行中以提高能源供应效率,以及环境和经济挑战。本文激励了这些挑战,本文详细说明了微电网最佳调度的两级多目标优化模型。基于使用时间模型的需求响应计划和插入式电动车已被整合到微耕水中,以促进经济和环境目标。所提出的模型基于Wohler曲线和交流电流方程扩展了逼真的EVS模型。所提出的模型暴露于各种随机参数,包括风输出,负载,价格和EVS行为。为了处理不确定性,解决问题,分别应用了基于模糊决策策略的情景的随机和加权和。在33柱微电网上测试了所提出的模型,并检查不同情况。结果证明了需求响应的有效整合的影响,以及在减少运营成本中的插入式电动车辆,分别发出3.57%和3.4%。(c)2021 elestvier有限公司保留所有权利。

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