提升高压直挂储能变流器暂态过载能力的调控方法OA
Control Techniques for Enhancing Transient Overload Capability of High-voltage Transformerless Battery Energy Storage System
构网型高压直挂储能是支撑新型电力系统稳态电量平衡和暂态主动支撑的重要装备,而实现暂态支撑需具备一定的过电流能力,现有器件容量超配方式导致系统成本增加.该文充分利用高压直挂储能系统的模块化拓扑特点和控制灵活性,提出提升过载能力的拓扑动态重构的实现方法.进一步,建立器件的电热耦合模型,提出器件结温在线估计方法,通过结温闭环控制,充分挖掘功率器件结温应力裕度,进而提出构网型装备过电流能力尽限利用和调控方法.基于上述研究,在功率器件不超配前提下,经济性地提升装备的暂态过电流水平.最后,通过电-磁-热联合仿真验证所提设计方法及控制策略的有效性,故障期间最大可输出 3.65 倍暂态电流,大幅提升构网型装备对并网点电压的支撑能力.
Grid-forming high-voltage transformerless energy storage is a critical equipment for supporting the steady-state power balance and transient active support of new power systems. To achieve transient support,a certain overcurrent capability is required. However,the current practice of over-sizing devices leads to increased system costs. This paper leverages the modular topology and control flexibility of high-voltage transformerless energy storage systems to propose a dynamic topology reconfiguration method for enhancing overload capability. Furthermore,an electro-thermal coupling model for the devices is established,and an online junction temperature estimation method is introduced. By implementing closed-loop control of the junction temperature,the thermal stress margin of the power devices is fully exploited,leading to the development of methods for maximizing and regulating the overcurrent capability of grid-forming equipment. Based on the above research,the transient overcurrent capability of the equipment is economically enhanced without oversizing the power devices. Finally,the effectiveness of the proposed design method and control strategy is verified through electromagnetic–thermal co-simulation. During faults,the equipment can deliver up to 3.65 times the rated transient current,significantly improving the voltage support capability of the grid-forming converter at the point of common coupling.
吴西奇;刘怡琳;马柯;卢宇;李睿;蔡旭
电力传输与功率变换控制教育部重点实验室(上海交通大学),上海市 闵行区 200240电力传输与功率变换控制教育部重点实验室(上海交通大学),上海市 闵行区 200240电力传输与功率变换控制教育部重点实验室(上海交通大学),上海市 闵行区 200240南京南瑞继保电气有限公司,江苏省 南京市 211106电力传输与功率变换控制教育部重点实验室(上海交通大学),上海市 闵行区 200240电力传输与功率变换控制教育部重点实验室(上海交通大学),上海市 闵行区 200240
信息技术与安全科学
高压直挂电池储能构网型电网暂态支撑短时过载
high-voltage transformerlessbattery energygrid forminggrid transient supportshort-term overload
《中国电机工程学报》 2026 (16)
6018-6027,中插26,11
中国博士后科学基金资助项目(2025M780475)国家资助博士后研究人员计划(GZC20250337). China Postdoctoral Science Foundation(2025M780475)National-funded Postdoctoral Research Program(GZC20250337).
评论