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Optimal Charging/discharging Strategy of Electric Vehicles in Residential Area Considering User Comprehensive Satisfaction

机译:考虑用户综合满意度的住宅区电动汽车的最佳充电/放电策略

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At present, the research on charging/discharging of electric vehicles (EVs) lacks consideration of the user experience, particularly with the aspects of user's convenience and profitability. Therefore, this paper analyses the travelling characteristics and travelling demand of EV users in a residential area and establishes the user comprehensive satisfaction model considering travel convenience and charging/discharging economy. Based on this model, a genetic algorithm is used to optimize the charging/discharging strategy of EVs with the aim of maximizing user comprehensive satisfaction, the validity of the proposed optimization model is verified by results of example. The model is also used to study the impact of large-scale EVs charging/discharging optimization strategy on grid load fluctuation. Based on the load data of a residential area, the simulation is carried out, and the influence of different peak-valley prices on EVs charging/discharging strategy is analysed. Our case analysis shows that the load peak-valley difference is reduced. With the increase of peak-valley electricity price, more users discharge during the peak hours and charge during the peak-off hours, the load peak-valley difference and the load fluctuation decrease accordingly.
机译:目前,电动车辆充电/放电的研究缺乏对用户体验的考虑,特别是用户方便和盈利能力的方面。因此,本文分析了EV用户在住宅区的旅行特性和旅行需求,并考虑了考虑旅行方便和充电/放电经济的用户综合满意度模型。基于该模型,遗传算法用于优化EVS的充电/放电策略,目的是最大化用户综合满意度,通过示例的结果验证所提出的优化模型的有效性。该模型还用于研究大规模EVS充电/放电优化策略对网格荷载波动的影响。基于住宅区的负载数据,分析了模拟,分析了不同峰值价格对EVS充电/放电策略的影响。我们的案例分析表明,负载峰值差差减少。随着峰谷电价的增加,峰值小时在高峰时段和充电期间放电更多的用户,负载峰值差异和负载波动相应地减小。

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