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A multi-objective framework for energy resource scheduling in active distribution networks

机译:主动配电网能源调度的多目标框架

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Purpose: The purpose of this paper is to investigate the impacts of electric vehicles' (EVs) charging/discharging decisions in energy resources scheduling problem of active distribution networks. Design/methodology/approach: The problem under study is modelled as a two-stage optimisation problem in which the main requirements of EV owners are introduced as an objective function of the first stage. The total energy costs and the emission factor are considered as the main criteria of the second stage. The output generation schedules of distributed generation (DG) technologies together with the charging/discharging schedule of EVs are proposed as decision variables of the energy scheduling problem. Therefore, some effective methods are presented to model the uncertainties associated with these variables. Findings: The results proved that an efficient compromise can be reached between the emission factor and the energy cost of the system. In addition, it has been emphasised on the importance of such comprehensive energy scheduling frameworks. Originality/value: This paper contributes by: (a) providing a multi-objective framework for energy scheduling of active distribution networks, (b) extracting the mathematical model of this two-stage problem and (c) employing a linearised optimisation model to reach its global optimal solution.
机译:目的:本文的目的是研究电动汽车(EV)的充电/放电决策对有源配电网能源调度问题的影响。设计/方法/方法:将研究中的问题建模为两阶段优化问题,其中将电动汽车车主的主要要求作为第一阶段的目标功能进行介绍。总能源成本和排放因子被视为第二阶段的主要标准。分布式发电(DG)技术的输出发电时间表与电动汽车的充电/放电时间表一起被提出作为能源调度问题的决策变量。因此,提出了一些有效的方法来模拟与这些变量相关的不确定性。结果:结果证明,可以在排放因子和系统的能源成本之间达成有效的折衷。另外,已经强调了这种全面的能量调度框架的重要性。原创性/价值:本文的贡献在于:(a)为主动配电网的能源调度提供多目标框架,(b)提取该两阶段问题的数学模型,以及(c)采用线性化优化模型来达到其全球最佳解决方案。

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