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提升高速公路太阳能发电利用效率:优化电动汽车充换电方案与移动储能系统调度
Enhancing solar energy generation utilization along highways: optimizing electric vehicle charging-swapping schemes and scheduling mobile energy storage systems
| 作者 | Dawei Wanga · Jingwei Guob · Yongxiang Zhang · Tao Fengc · Chunyang Zhang |
| 期刊 | Applied Energy |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 399 卷 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 储能系统 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | Design two-level optimization method to enhance solar energy generation utilization. |
语言:
中文摘要
摘要 利用太阳能资源为电动汽车(EV)补充电能,在低碳高速公路建设中正受到越来越多关注。目前,电动汽车补电的主要方式包括充电和电池更换。然而,上述两种方式之间的差异以及太阳能资源在时空分布上的不均衡性,给太阳能高效利用带来了挑战。此外,采用移动式储能系统(MESSs)为电动汽车提供能量补给已成为一个重要的研究方向。因此,本文提出一种两层次优化方法,协同优化电动汽车的充电与换电方案,并调度移动储能系统,以实现高速公路沿线太阳能发电的高效分配。所提出的模型引入时空网络概念,刻画充电型电动汽车、换电型电动汽车及移动储能系统的运行特征及其在交通与能源系统间的交互关系。在第一层次,构建了一个调度两类电动汽车的框架,同时管理换电站(BSSs)中亏电电池的再充电过程,旨在最大化高速公路运营方的收益,并满足换电型电动汽车对满电电池的需求。在第二层次,聚焦于优化移动储能系统的充放电功率及其行驶路径,根据电网供电的充电需求有效再分配太阳能电力。案例研究表明,所提出的方法显著提升了太阳能的利用率,减少了对电网电力的依赖,为绿色高速公路提供了更具可持续性和经济性的运营解决方案。
English Abstract
Abstract Utilizing solar energy resources to replenish electricity in electric vehicles (EVs) is gaining increasing attention on low-carbon highways. Currently, the primary methods for EV power replenishment are charging and battery swapping. However, the differences between the above two methods and the uneven time-space distribution of solar energy resources pose challenges to optimizing solar energy utilization. Additionally, the use of mobile energy storage systems (MESSs) for EV energy replenishment has become a notable area of research. Therefore, this paper proposes a two-level approach for optimizing EV charging-swapping schemes alongside scheduling MESSs to efficiently allocate solar energy generation along highways. The proposed model employs spatial-temporal network concepts for charging-type EVs, swapping-type EVs, and MESSs to portray the interactions between transportation and energy systems. In the first level, we develop a framework to schedule two types of EVs while managing the recharging process for depleted batteries at battery swapping stations (BSSs). The goal is to maximize the highway manager’s benefits while satisfying fully charged battery demands for swapping-type EVs. In the second level, we focus on optimizing the discharge/charge power and routes of MESSs to effectively redistribute solar energy according to grid-supplied charging demands. Our case study demonstrates that the proposed method significantly enhances solar energy utilization and reduces grid electricity consumption, providing a more sustainable and economical operational solution for green highways.
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SunView 深度解读
该研究对阳光电源高速公路光储充一体化解决方案具有重要价值。ST系列储能变流器和PowerTitan系统可作为固定式储能支撑光伏波动,移动储能调度思路可启发我们开发车载储能系统与充电站协同控制策略。SG系列光伏逆变器的MPPT优化技术能最大化高速公路沿线光伏发电效率,结合iSolarCloud平台可实现充换电站能量管理与预测性调度。该时空网络优化方法为我们开发智能充电桩产品的V2G功能及多站协同控制算法提供理论支撑,助力构建低碳高速交通能源生态。