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Dynamic control and dead-time compensation method of an isolated dual-active-bridge DC-DC converter

机译:隔离式双有源桥直流-直流变换器的动态控制和死区补偿方法

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This paper presents dynamic control and a dead-time compensation method of an isolated dual-active-bridge (DAB) dc-dc converter. Conventional phase-shift control methods for the DAB converter may cause dc offsets in both inductor current and transformer magnetic flux density in transient states. The dynamic control method in this paper independently controls the diagonal switches in each H-bridge converter to modify the duty ratios in transient states. This method enables both inductor current and transformer magnetic flux density to be settled within a half switching period without any dc offsets. Moreover, the phase-shift error caused by the dead time is analyzed in terms of the switching angle. This analysis reveals that the dead time causes the switching-angle error in only one of the two H-bridge converters and may cause dc offsets. A new dead-time compensation method based on this analysis is proposed to eliminate the dc offsets and to achieve a good dynamic response. A 5-kW experimental system verifies the validity of the proposed control method.
机译:本文提出了一种隔离式双有源桥(DCB)DC-DC转换器的动态控制和死区补偿方法。 DAB转换器的常规相移控制方法可能会在瞬态下导致电感器电流和变压器磁通密度的直流偏移。本文的动态控制方法独立地控制每个H桥转换器中的对角开关,以修改瞬态下的占空比。这种方法使电感器电流和变压器磁通密度都可以在一个半开关周期内稳定下来,而没有任何直流偏移。此外,由死区时间引起的相移误差根据开关角度进行分析。该分析表明,死区时间仅在两个H桥转换器之一中引起开关角度误差,并可能导致直流失调。提出了一种基于这种分析的空载时间补偿方法,以消除直流失调并获得良好的动态响应。一个5千瓦的实验系统验证了所提出的控制方法的有效性。

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