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作 者:戴前程 张春 罗苏明[1] 李浩宇 DAI Qiancheng;ZHANG Chun;LUO Suming;LI Haoyu(School of Electrical Engineering,Anhui Polytechnic University,Wuhu 241000,China;Key Laboratory of Advanced Perception and Intelligent Control of High-end Equipment,Ministry of Education,Wuhu 241000,China)
机构地区:[1]安徽工程大学电气工程学院,安徽芜湖241000 [2]高端装备先进感知与智能控制教育部重点实验室,安徽芜湖241000
出 处:《四川轻化工大学学报(自然科学版)》2024年第3期51-58,共8页Journal of Sichuan University of Science & Engineering(Natural Science Edition)
基 金:安徽省高校自然科学研究重大项目(KJ2015ZD06);安徽省大学生创新创业训练计划项目(S202210363200)。
摘 要:为对系统有功功率进行双向调节,同时使二次侧直流母线电压保持稳定,并减小电力电子变压器(PET)二次侧母线的扰动对PET其他端口的性能所造成的影响,分析双有源桥(DAB)双向DC-DC变换器在改进扩展移相控制(EPS)下的工作模式和回流功率,设计了控制区域内零回流功率控制点。以系统功率平衡为目的,研究系统功率平衡控制策略,该策略将逆变器的功率引入DAB变换器,以减小DAB二次侧电压波动。在改进扩展移相控制下,系统负载功率从0kW突变至15kW时,二次侧母线电压最大变化约为30V,达到稳态过渡时间约为10ms;系统负载功率从15kW突变至10kW时,二次侧母线电压基本无变化;在一次侧母线电压发生突变时,二次侧母线电压无明显波动。To achieve bidirectional control of the active power of the system and keep the stability of the DC bus voltage on the secondary side at the same time,the disturbances of the Power Electronic Transformer(PET)secondary bus that could affect the performance of other ports of PET is minimized.The operating mode and backflow power of the Dual-Active-Bridge(DAB)bidirectional DC-DC converter under the improved Extended Phase Shift(EPS)control is analyzed and the control point for zero reflux power region within the control region is designed.With the aim of system power balance,a power balance control strategy is investigated,which introduces the inverter power into the DAB converter to reduce the voltage fluctuation on the DAB secondary side.Under the improved extended phase shift control,when the system load power changes from 0 kW to 15 kW,the maximum variation of the secondary bus voltage is approximately 30 V,within a steady-state transition time of about 10 ms.When the system load power changes from 15 kW to 10 kW,the secondary bus voltage remains essentially unchanged.In the event of a sudden change in the primary bus voltage,there is no obvious fluctuation observed in the secondary bus voltage.
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