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A Novel Control Strategy on Multiple-Mode Application of Electric Vehicle in Distributed Photovoltaic Systems

机译:分布式光伏系统中电动车辆多模式应用的新型控制策略

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摘要

Considering the booming development of electric vehicle (EV), this article presents a novel control scheme analyzing EV multiple-mode application in a number of distributed photovoltaic (PV) systems, which rationalizes the energy flow among the energy system participants containing a power grid, a grid-connected PV system, power consumption devices, storage batteries, and EV. Based on the control scheme, the authors propose two day-ahead optimal control strategies with different objective functions: one is minimizing the daily electricity expense of an individual distributed PV system and the other is minimizing the daily total expense of distributed PV systems which EV can be connected to. The model has been verified by the actual data and forecast data, respectively. The results show under the individual objective, in the distributed PV system with EV, the electricity expense can obtain an annual reduction of 27.18%. Furthermore, in the distributed PV system with a storage battery as well as EV, the electricity expense can obtain an annual reduction from 30.67% to 81.49% with a storage battery capacity changing from 1 kWh to 20 kWh. Under the total objective, the total expense and even the individual expense have different degrees of reduction. However, the specific benefits should be rerationally distributed by balancing the interests of all the distributed PV systems. In addition, besides the application in the distributed PV systems, this model may have some potential on the development of a regional energy system.
机译:考虑到电动车辆的蓬勃发展(EV),本文介绍了一种新的控制方案,分析了许多分布式光伏(PV)系统中的EV多模式应用,该系统在具有电网的能量系统参与者之间的能量流中的能量流动,电网连接的PV系统,功耗设备,蓄电池和EV。根据控制方案,作者提出了两天的前方最佳控制策略,具有不同的客观功能:一个是最大限度地减少个人分布式光伏系统的日常电力费用,另一个是最小化EV可以的分布式光伏系统的每日总费用连接到。该模型分别通过实际数据和预测数据验证。结果表明,在个人目的下,在分布式光伏系统中,电力费可以获得年减少27.18%。此外,在具有蓄电池以及EV的分布式光伏系统中,电力费可以从30.67%的年减少到81.49%,蓄电池容量从1千瓦瓦更换为20千瓦时。在总目标下,总费用甚至个人费用也有不同程度的减少。但是,通过平衡所有分布式光伏系统的利益,应更加地分发特定的益处。此外,除了应用于分布式光伏系统中的应用,该模型可能对区域能源系统的开发有一些潜力。

著录项

  • 来源
    《Complexity》 |2018年第2期|共11页
  • 作者单位

    Shanghai Univ Engn Sci Sch Urban Railway Transportat Shanghai 201620 Peoples R China;

    Donghua Univ Sch Mech Engn Shanghai 201620 Peoples R China;

    Shanghai Univ Engn Sci Sch Urban Railway Transportat Shanghai 201620 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 大系统理论;
  • 关键词

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