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Risk management of smart grids based on managed charging of PHEVs and vehicle-to-grid strategy using Monte Carlo simulation

机译:基于PHEV的可管理充电和使用蒙特卡洛模拟的车对网策略的智能电网风险管理

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The unmanaged charging of plug-in-hybrid-electric vehicles (PHEVs) may adversely affect electric grid reliability because a large amount of additional electrical energy is required to charge the PHEVs. In this paper, a comprehensive method to evaluate the system reliability concerning the stochastic modeling of PHEVs, renewable resources, availability of devices, etc. is proposed. In addition, a novel risk management method in order to reduce the negative PHEVs effects is introduced. This method, which consists of managed charging and vehicle-to-grid (V2G) scenarios, can be practically implemented in smart grids because the bidirectional-power-conversion technologies and two-way of both the power and data are applicable. The introduced method was applied to a real 20 kV network of the Hormozgan Regional Electric Company (HREC) of Iran which is considered as a pilot system for upgrading to smart distribution grid. The results showed that the smart grid's adequacy was jeopardized by using the PHEVs without any managed charging schedule. The sensitivity analyses results illustrated that by using the risk management scenarios, not only did the PHEVs not compromise the system reliability, but also in the V2G scenario acted as storage systems and improved the well-being criteria and adequacy indices. The comparison between the results based on the proposed method and the other conventional approaches in addition to study of various parameters uncertainty emphasized the advantages of the proposed method. (C) 2015 Elsevier Ltd. All rights reserved.
机译:插电式混合动力汽车(PHEV)的无管理充电可能会对电网可靠性产生不利影响,因为需要大量的额外电能来为PHEV充电。本文提出了一种综合的方法来评估有关PHEV的随机建模,可再生资源,设备的可用性等方面的系统可靠性。此外,介绍了一种新颖的风险管理方法,以减少PHEV的负面影响。该方法由托管充电和车辆到电网(V2G)场景组成,可以应用在智能电网中,因为双向功率转换技术以及功率和数据的双向转换都是适用的。引入的方法已应用于伊朗Hormozgan区域电力公司(HREC)的真实20 kV网络,该网络被视为升级为智能配电网的试验系统。结果表明,在没有任何可控充电时间表的情况下,使用插电式混合动力汽车会损害智能电网的充足性。敏感性分析结果表明,通过使用风险管理方案,插电式混合电动汽车不仅不损害系统可靠性,而且在V2G方案中充当存储系统并改善了福祉标准和充足性指标。除了研究各种参数不确定性以外,基于所提出的方法与其他常规方法的结果之间的比较也强调了所提出方法的优势。 (C)2015 Elsevier Ltd.保留所有权利。

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