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基于可再生能源的并网电动汽车充电站恒定无功功率与恒定电压控制策略性能评估
Performance Evaluation of Constant Voltage and Reactive Power Control Strategies for Renewable-Integrated Grid-Connected EV Charging Stations
| 作者 | Sk. A. Shezan · Md. Fatin Ishraque · Kamil Ahmad · Md. Nimul Hasan · GM Shafiullah · Md Moktadir Rahman |
| 期刊 | IEEE Transactions on Industry Applications |
| 出版日期 | 2025年6月 |
| 技术分类 | 电动汽车驱动 |
| 技术标签 | 充电桩 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 电动汽车充电站 可再生能源 恒无功恒压控制 电网稳定性 充电效率 |
语言:
中文摘要
本研究提出了一种创新的基于可再生能源的电动汽车充电站(EVCS),采用恒定无功功率(Q)和恒定电压(V)控制。该方法旨在解决可再生能源有限、运营成本高以及电网不稳定等问题,以提高电动汽车的充电效率。通过整合风力涡轮机、太阳能光伏板和储能系统等可再生能源,该充电站能够在非高峰时段消耗电能,并在用电需求高时向电网供电。其创新之处在于应用恒定电压和恒定无功功率控制来稳定电压和频率,确保系统在故障条件下的恢复能力。仿真结果表明,控制器具有较强的鲁棒性,电压和频率能在0.4秒内恢复到标称值,显示出故障后的快速恢复能力。所提出的策略为电动汽车充电站提供了一个可扩展且经济高效的框架,适用于面临类似挑战的地区。此外,通过整合可再生能源,该策略有助于电网稳定、提高能源效率并减少碳足迹。该解决方案优化了可再生资源的利用,支持向可持续能源系统的转型,为未来提供了可靠且高效的充电基础设施。
English Abstract
This research presents an innovative Constant Reactive Power (Q) and Constant Voltage (V) controlled renewable energy-based Electric Vehicle (EV) Charging Station (EVCS). The proposed approach addresses challenges such as limited renewable energy sources, high operational costs, and grid instability, aiming to enhance EV charging efficiency. By integrating renewable resources like wind turbines, solar photovoltaic panels, and energy storage systems, the station can consume electricity during off-peak hours and supply power to the grid when demand is high. The innovation lies in applying Constant V and Q control to stabilize voltage and frequency, ensuring the system’s resilience under fault conditions. Simulation results demonstrate the controllers’ robustness, with voltage and frequency returning to nominal values within 0.4 seconds, indicating rapid recovery after faults. The proposed strategy offers a scalable and cost-effective framework for EV charging stations, adaptable to regions with similar challenges. Additionally, it contributes to grid stability, enhances energy efficiency, and reduces carbon footprints by integrating renewable energy. This solution optimizes renewable resource usage and supports the transition to sustainable energy systems, providing a reliable and efficient charging infrastructure for the future.
S
SunView 深度解读
该恒定无功功率与恒定电压控制策略对阳光电源光储充一体化解决方案具有重要应用价值。研究中的动态无功调节技术可直接应用于阳光电源充电桩产品线,通过V/Q协调控制提升电网适应性。该策略与ST系列储能变流器的电压支撑功能形成互补,可优化光储充系统在弱电网场景下的并网性能。特别是在大规模充电站部署中,结合SG系列光伏逆变器的无功补偿能力,可构建分布式电压调节网络,降低电网冲击。建议将该控制算法集成至iSolarCloud平台,实现充电站群的协同无功管理,提升可再生能源消纳率与系统整体运行效率。