← 返回
光伏-储能移动充电站的能量管理策略
Energy Management Strategy for Photovoltaic-Energy Storage Mobile Charging Station
| 作者 | Qingsong Wang · Shaoqi Yang · Feiyu Chen · Ming Cheng · Mingqian Chen · Giuseppe Buja |
| 期刊 | IEEE Transactions on Sustainable Energy |
| 出版日期 | 2025年10月 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 储能系统 充电桩 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 光伏储能移动充电站 充电服务框架 能量管理策略 运营成本 移动充电调度 |
语言:
中文摘要
本文提出将光伏-储能充电站与移动充电服务(MCD)相结合,构建光伏-储能移动充电站(PV-ES-MCS),实现低碳环保与运行灵活性的协同。通过分析系统架构,建立综合运行成本与收益模型,结合移动充电调度的能量补给需求与经济性目标,构建考虑多重约束的能量管理优化模型,并采用灰狼优化算法求解。案例结果表明,该策略可实现站内多要素协调调控,降低运行成本6.7%,并保障移动充电调度能量补给效率,MCD电池更换成功率达100%。
English Abstract
This paper proposes the integration of photovoltaic-energy storage charging stations with mobile charging services (MCD)to form a photovoltaic-energy storage mobile charging station (PV-ES-MCS). The PV-ES-MCS establishes a charging service framework that simultaneously achieves low-carbon environmental benefits and operational flexibility. Furthermore, an energy management strategy is developed that considers both operational economics and mobile charging scheduling requirements. Through detailed analysis of the PV-ES-MCS system architecture, comprehensive modeling of operational costs and revenues is conducted. By incorporating the energy replenishment demands of mobile charging scheduling and operational cost reduction, an energy management objective function with corresponding constraints is formulated and solved using the Grey Wolf Optimizer algorithm. Case study results demonstrate that the proposed strategy enables coordinated multi-element regulation within the PV-ES-MCS station, reducing operational costs by 6.7% while effectively ensuring the energy replenishment efficiency of mobile charging scheduling with 100% MCD battery swap success.
S
SunView 深度解读
该光伏-储能移动充电站能量管理策略对阳光电源多产品线具有协同应用价值。在储能系统方面,可应用于PowerTitan储能系统的多场景调度优化,结合灰狼算法提升ST系列储能变流器的能量管理效率;在光伏业务中,可优化SG系列逆变器与储能的协调控制,提升MPPT算法在移动充电场景的适应性;在充电桩产品线,该策略可支撑移动充电服务的电池更换调度,实现100%补给成功率。研究提出的多重约束优化模型可集成至iSolarCloud平台,实现光储充一体化智能调度,降低综合运行成本6.7%,为阳光电源构建灵活高效的移动充电解决方案提供技术支撑。