当前位置: X-MOL 学术IEEE Open J. Power Electron. › 论文详情
Our official English website, www.x-mol.net, welcomes your feedback! (Note: you will need to create a separate account there.)
A T-Type DC-DC Converter With Reduced Middle-Leg Switch Current Stress and Improved Light-Load Efficiency
IEEE Open Journal of Power Electronics Pub Date : 2020-07-22 , DOI: 10.1109/ojpel.2020.3011174
Javad Khodabakhsh , Gerry Moschopoulos

The ZVS T-type converter can be used as an alternative to the conventional ZVS-PWM full-bridge (FB) converter for applications where improved light-load operation is required. In this converter, two of the switches conduct only the current that flows during a freewheeling mode of operation and two of the switches conduct only the current that flows in the converter when it is in an energy-transfer mode. This is unlike the switches in the ZVS-PWM-FB converter that must conduct both currents. Although the ZVS T-type converter needs less inductive energy to achieve ZVS in its switches, it has a higher primary current during its freewheeling modes than the ZVS-PWM-FB converter because it is basically a half-bridge converter. In this paper, the use of ZVZCS methods to reduce the RMS value of the current in switches that are used in the freewheeling current path is investigated. The operation of the ZVS-PWM T-type converter and a T-type converter operating with ZVZCS are reviewed and compared analytically. Experimental results obtained from prototypes of the two converters along with results from prototypes of the standard ZVS-PWM-FB converter and a ZVZCS-PWM-FB converter are presented. It is demonstrated that a T-type converter with ZVZCS has a better light-load efficiency than the ZVS-PWM-FB and the ZVS T-type converters and that the current stress in its middle-leg switches is much smaller; thus, it can be implemented with much smaller and inexpensive middle-leg switches.

中文翻译:

T型DC-DC转换器具有降低的中腿开关电流应力并提高了轻负载效率

ZVS T型转换器可以用作传统ZVS-PWM全桥(FB)转换器的替代产品,用于需要改善轻载运行的应用。在该转换器中,两个开关仅传导在续流运行模式期间流动的电流,而两个开关仅传导在转换器处于能量传输模式时在转换器中流动的电流。这与ZVS-PWM-FB转换器中必须传导两个电流的开关不同。尽管ZVS T型转换器在其开关中实现ZVS所需的电感能量更少,但由于其基本上是一个半桥转换器,因此在续流模式下比ZVS-PWM-FB转换器具有更高的初级电流。在本文中,研究了使用ZVZCS方法来减小续流电流路径中使用的开关中电流的RMS值。本文对ZVS-PWM T型转换器和与ZVZCS一起工作的T型转换器的操作进行了回顾和分析比较。给出了从两个转换器的原型获得的实验结果,以及从标准ZVS-PWM-FB转换器和ZVZCS-PWM-FB转换器的原型获得的结果。结果表明,具有ZVZCS的T型转换器比ZVS-PWM-FB和ZVS T型转换器具有更好的轻载效率,并且其中支脚开关中的电流应力要小得多。因此,它可以用更小,更便宜的中腿开关来实现。本文对ZVS-PWM T型转换器和与ZVZCS一起工作的T型转换器的操作进行了回顾和分析比较。给出了从两个转换器的原型获得的实验结果,以及从标准ZVS-PWM-FB转换器和ZVZCS-PWM-FB转换器的原型获得的结果。结果表明,具有ZVZCS的T型转换器比ZVS-PWM-FB和ZVS T型转换器具有更好的轻载效率,并且其中脚开关的电流应力要小得多。因此,它可以用更小,更便宜的中腿开关来实现。本文对ZVS-PWM T型转换器和与ZVZCS一起工作的T型转换器的操作进行了回顾和分析比较。给出了从两个转换器的原型获得的实验结果,以及从标准ZVS-PWM-FB转换器和ZVZCS-PWM-FB转换器的原型获得的结果。结果表明,具有ZVZCS的T型转换器比ZVS-PWM-FB和ZVS T型转换器具有更好的轻载效率,并且其中脚开关的电流应力要小得多。因此,它可以用更小,更便宜的中腿开关来实现。结果表明,具有ZVZCS的T型转换器比ZVS-PWM-FB和ZVS T型转换器具有更好的轻载效率,并且其中脚开关的电流应力要小得多。因此,它可以用更小,更便宜的中腿开关来实现。结果表明,具有ZVZCS的T型转换器比ZVS-PWM-FB和ZVS T型转换器具有更好的轻载效率,并且其中脚开关的电流应力要小得多。因此,它可以用更小,更便宜的中腿开关来实现。
更新日期:2020-08-11
down
wechat
bug