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Dual active bridge converter with PWM control for solid state transformer application

机译:具有PWM控制的双有源桥式转换器,适用于固态变压器应用

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For the single-phase, dual active bridge converter (DAB) based three-stage solid state transformer (SST), the instantaneous load power seen by the DAB converter varies from zero to twice the load average power at double-line frequency. Traditionally with phase-shift modulation (PSM) control, large DC link capacitors are needed to handle the instantaneous load power variation while DAB converter only processes the constant power resulting in better soft-switching range and consequently high efficiency. However, the large electrolytic capacitors required in the DC link adversely affect the power density and the reliability of SST. In this paper, a PWM control is applied to minimize the DC link capacitor for the DAB based three-stage SST. The experimental results prove that DAB converter with PWM control has extended ZVS range down to nearly zero load and therefore improved efficiency at light load. Consequently, DAB can achieve comparable high efficiency while the DC link capacitors of SST can be reduced to a value low enough for film capacitor implementation.
机译:对于基于单相,双有源桥式转换器(DAB)的三级固态变压器(SST),DAB转换器所看到的瞬时负载功率在双线频率下从零到两倍于平均负载功率。传统上,通过相移调制(PSM)控制,需要大的DC链路电容器来处理瞬时负载功率变化,而DAB转换器仅处理恒定功率,从而产生更好的软开关范围,从而提高效率。但是,直流链路中所需的大型电解电容器会对功率密度和SST的可靠性产生不利影响。在本文中,应用了PWM控制以最小化基于DAB的三级SST的直流链路电容器。实验结果证明,具有PWM控制的DAB转换器可将ZVS范围扩展到接近零负载,从而改善了轻负载时的效率。因此,DAB可以达到相当高的效率,而SST的DC链路电容器可以减小到足以实现薄膜电容器的低值。

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