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首页> 外文期刊>International journal of electrical power and energy systems >Evaluating the effect of electric vehicle parking lots in transmission-constrained AC unit commitment under a hybrid IGDT-stochastic approach
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Evaluating the effect of electric vehicle parking lots in transmission-constrained AC unit commitment under a hybrid IGDT-stochastic approach

机译:在杂交IGDT - 随机方法下评估电动车辆停车场在传输受限的AC单元承诺中的影响

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Power network operators have recently faced new challenges due to an increase in the penetration of nondispatchable renewable energy sources in power grids. Incorporating emerging flexible resources like electric vehicle parking lots (EVPLs) and demand response programs (DRPs) into power systems, could be a good solution to deal with inherent uncertainties imposed by these resources to the power grid. EVPLs can improve power system operating conditions by active and reactive power injection capabilities. The participation of consumers in DRPs can also improve energy consumption management by decreasing or shifting loads to other periods. This paper proposes a hybrid information gap decision theory (IGDT)stochastic method to solve a transmission constrained AC unit commitment model integrated with electric vehicle (EV), incentive-based DRP, and wind energy. The behavioural uncertainty related to EV owners is modelled using a scenario-based method. Additionally, an IGDT method is applied to manage wind energy uncertainty under a two-level optimization model. Verification of the proposed model is done under several case studies. Based on the results achieved, the proposed risk-based hybrid model allows the operator to differentiate between the risk level of existing uncertainties and apply a high-flexibility decision-making model to deal with such difficulties. Additionally, the role of the aforementioned flexible resources in the reduction of power system running costs and wind power uncertainty handling are evaluated. Numerical results confirm a 3.7% reduction in the daily operating costs as a consequence of coordinated scheduling of EVPL and DRP. Moreover, Taking advantage of reactive power injection of EVPL provides more cost savings.
机译:电网运营商最近面临的新挑战是由于电网中不可分割的可再生能源的渗透率的增加。将新兴的灵活资源纳入电动车辆停车场(EVPLS)和需求响应计划(DRPS)进入电力系统,可能是处理这些资源对电网施加的固有不确定性的良好解决方案。 EVPLS可以通过主动和无功的功率注入能力来改善电力系统操作条件。消费者在DRPS中的参与也可以通过将负载转移到其他时段来改善能量消耗管理。本文提出了一种混合信息隙决策理论(IGDT)随机方法,解决了与电动车辆(EV),激励的DRP和风能集成的传输受限的AC单元承诺模型。与EV业主相关的行为不确定性使用基于方案的方法进行建模。另外,在两级优化模型下应用IGDT方法来管理风能不确定性。在几种案例研究下,拟议模型的验证是在若干案例研究中完成的。基于所实现的结果,拟议的风险基于风险的混合模型允许操作员区分现有不确定性的风险水平,并应用高灵活性决策模型来处理此类困难。另外,评估上述灵活资源在减少电力系统运行成本和风能不确定性处理中的作用。根据EVPL和DRP的协调调度,数值结果证实了日常运营成本的减少3.7%。此外,利用反应性注入EVPL提供了更具成本的节省。

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