A Non-Isolated Based Boost DC-DC Converter with VM Technique and Soft Switching Capability

H. Shayeghi, S. Pourjafar, F. Sedaghati, Omid Eghbali
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引用次数: 3

Abstract

In this work, a non-isolated based DC-DC converter with high voltage conversion ratio is presented that is appropriate candidate for high voltage gain application such as Photovoltaic (PV) systems. The proposed topology combines coupled inductor and voltage multiplier (VM) circuit. By selecting the proper turn’s ratio of the coupled inductor winding, the wider voltage gain can be achieved. The VM circuit is used for further enlarging the voltage gain and also acts as a clamp circuit which provide low voltage stress through the switch. In addition, a diode has zero current switching (ZCS) condition in OFF-state which is main feature of the suggested structure. The proposed converter has used a single power MOSFET with less ON state resistance value. Hence, the control of the proposed topology will be simple and the conduction losses will be reduced by using only active switch with lower resistance. The operation principle, theoretical analysis and comparison study are accomplished in this study. Eventually, In order to ensure the proficiency of the presented structure, the experimental consequences with 25 kHz switching frequency is provided.
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基于虚拟机技术和软开关能力的非隔离升压DC-DC变换器
在这项工作中,提出了一种具有高电压转换比的非隔离型DC-DC转换器,适合于光伏(PV)系统等高电压增益应用。所提出的拓扑结构结合了耦合电感和电压乘法器电路。通过选择合适的耦合电感绕组匝数比,可以获得更宽的电压增益。VM电路用于进一步扩大电压增益,也可作为箝位电路,通过开关提供低电压应力。此外,二极管在关闭状态下具有零电流开关(ZCS)条件,这是该结构的主要特点。该变换器采用单功率MOSFET,具有较小的ON态电阻值。因此,所提出的拓扑结构的控制将是简单的,并且通过仅使用具有较低电阻的有源开关将减少导通损耗。本研究完成了其工作原理、理论分析和比较研究。最后,为了保证所提出的结构的熟练性,给出了25 kHz开关频率下的实验结果。
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