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考虑蓄电池和电容器组混合储能的列车能量回收研究
Research on Energy Recovery of Trains Considering Hybrid Energy Storage of Batteries and Capacitors
【摘要】 新型电力系统和智能电网储能技术是实现“降碳、减排、节能”目标的重要路径,也是发展绿色经济和清洁能源的重要举措.对地铁列车能量调度及其制动能量回收与储存展开研究.首先,分析了超级电容器组和蓄电池组件混合储能技术原理和结构特点.其次,改善列车制动能量回收率,加强荷电状态(State of Charge, SOC)调度过程的可控性和灵活性,为电能协同利用与回收提供安全运行保障和智能检测.实验与仿真结果表明,采用混合储能技术优化后的列车制动能量损失单位里程每小时降低2 000 W,牵引网压电量回收率提升了15%,电流传输稳定效率提升8%,列车用电调度效率和SOC估算精准度分别提高了约10%和12%,有效验证该混合储能优化方案的可行性.
【Abstract】 The new power system and smart grid energy storage technology are important measures to achieve "carbon reduction,emission reduction,energy conservation",and are also inevitable measures for developing green economy and clean energy. The article takes subway train energy dispatch and train braking energy recovery and storage as case studies. Firstly,analyze and consider the principles and structural characteristics of hybrid energy storage technology using super-capacitor banks and battery components. Secondly,improve the energy recovery rate of train braking,strengthen the controllability and flexibility of SOC charge dispatch,and provide safe operation guarantee and intelligent detection for the coordinated utilization and recovery of electrical energy. Finally,experiments and simulations showed that the use of hybrid energy storage technology to optimize train braking energy loss per hour reduced the unit mileage by 2 000 W,increased traction network voltage recovery rate by 15%,improved current transmission stability efficiency by 8%,and increased train electricity dispatch efficiency and SOC charging accuracy by about 10% and 12%,respectively. This verifies the effectiveness of the optimized hybrid energy storage scheme technology.
【Key words】 traction power supply system; battery pack; super-capacitors group; braking energy of subway trains; intelligent scheduling and efficiency;
- 【文献出处】 绵阳师范学院学报 ,Journal of Mianyang Teachers’ College , 编辑部邮箱 ,2026年02期
- 【分类号】U270.35;U223
- 【下载频次】28