改进传统Buck变换器性能的交错技术

Rizky Ajie Aprilianto, Rizki Mendung Ariefianto
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引用次数: 2

摘要

传统降压变换器(CBC)拓扑结构已广泛应用于电力电子器件中,以降压直流电压。输出纹波大、效率低成为CBC面临的问题。优化CBC可以使用交错技术,产生专门克服输出纹波的交错降压转换器(IBC)拓扑。遗憾的是,传统降压拓扑与交错拓扑的综合比较研究尚未得到重视。本文比较了这两种拓扑结构,以解释交错技术如何改善传统电路的性能。在PSIM软件中考虑寄生元件进行仿真,得到与一般硬件实现接近的结果。结果表明,采用IBC结构可以减小输出滤波器的电容和电感电流纹波。此外,在各种电感电流纹波设计中,IBC的动态响应速度比CBC更快,可以达到稳态条件。在CBC中应用交错技术,平均效率比额定功率为250 W的器件提高约0.43%。实验证明,交错技术提高了传统拓扑的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Interleaving Technique for Improving Conventional Buck Converter Performance
Conventional buck converter (CBC) topology has been widely used as power electronics devices to step-down dc voltage. A significant output ripple and low efficiency become problems faced by CBC. Optimizing CBC can use an interleaving technique resulting in interleaved buck converter (IBC) topology dedicated to overcoming output ripple. Unfortunately, the comprehensive study comparing conventional buck and interleaved topology still have not acquired special attention. This paper compares both topologies to explain how the interleaving technique can improve conventional circuit performance. Simulations were carried out in PSIM software by considering parasitic elements to obtain results close to the general hardware implementation. From the results, the capacitance of the output filter and inductor current ripple using IBC configuration can decrease. Also, the dynamic response of IBC is faster than CBC to achieve steady-state conditions in various inductor current ripple designs. By applying the interleaving technique in CBC, the average efficiency can be increased around 0.43% of the 250 W power rating device. It was proven that the interleaving technique improves the performance of conventional topology.
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