A novel soft switching bidirectional coupled inductor Buck-Boost converter for battery discharging-charging

A. Mirzaei, A. Jusoh, Z. Salam, E. Adib, H. Farzanehfard
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引用次数: 23

Abstract

This paper proposes a novel zero voltage transition (ZVT) auxiliary circuit applied to a bidirectional converter for interface circuit between ultracapacitors or batteries with DC bus in electric vehicle (EV), fuel cell electric vehicle (FCEV) and hybrid electric vehicle (HEV). This auxiliary circuit provides almost soft switching condition for all switching elements while the control circuit remains PWM. So, the energy conversion through the converter is highly efficient. The proposed converter acts as a ZVT Buck to charge ultracapacitor or battery. On the other hand, it acts as a ZVT Boost to discharge ultracapacitor or battery. Buck operation of the proposed bidirectional converter is analyzed and its operating modes are discussed. The simulation has been done using PSPICE software and its results verify aforementioned capabilities of this converter.
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一种用于电池充放电的新型软开关双向耦合电感Buck-Boost变换器
提出了一种新型零电压转换辅助电路,应用于电动汽车、燃料电池汽车和混合动力汽车的直流母线超级电容器或电池之间的双向变换器接口电路。该辅助电路为所有开关元件提供了几乎软开关的条件,而控制电路仍然是PWM。因此,通过转换器的能量转换是非常高效的。所提出的变换器作为一个ZVT Buck给超级电容器或电池充电。另一方面,它作为一个ZVT Boost放电超级电容器或电池。分析了所提出的双向变换器的降压工作,讨论了其工作模式。利用PSPICE软件进行了仿真,结果验证了该转换器的上述性能。
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Copyright page Parallel configuration in energy management control for the fuel cell-battery-ultracapacitor hybrid vehicles Automated test set-up for reverse recovery characterization of ultrafast diodes Design of a current mode PI controller for a single-phase PWM inverter Space Vector based Spread Spectrum Modulation scheme for three-level inverters
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