Design and analysis of an AC-DC LLC resonant converter with new bus voltage stabilization technique

Antony K. Peter, P. M. Amalraj, Boby Philip, J. Mathew
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引用次数: 3

Abstract

LLC resonant converter is an attractive choice for isolated power conversion stages, particularly because of its high efficiency. However, low power factor is an important issue in AC-DC LLC resonant converters. To improve the power factor, a boost power factor correction stage is usually required at the front end. To reduce the size and cost, both the boost and LLC stages can be controlled by the LLC switches while operating the boost converter in discontinuous conduction mode. However, line voltage variations and transient load changes can cause wide variations in the bus capacitor voltage which can lead to bus capacitor failure and unstable operation of the converter. In this paper, a simplified topology is proposed to avoid these issues. The converter can return the additional energy stored in the bus capacitor back to supply and thereby maintaining the bus capacitor voltage level. Design equations are derived for the converter and the circuit operation is verified using MAT LAB Simulink.
采用新型母线稳压技术的交直流LLC谐振变换器的设计与分析
有限责任公司谐振变换器是一种有吸引力的选择,隔离的功率转换级,特别是因为它的高效率。然而,低功率因数是交直流LLC谐振变换器的一个重要问题。为了提高功率因数,通常需要在前端安装一个升压功率因数校正级。为了减小尺寸和成本,当升压变换器在不连续导通模式下工作时,升压级和LLC级都可以由LLC开关控制。然而,线路电压的变化和负载的瞬态变化会引起母线电容电压的大幅度变化,从而导致母线电容失效和变换器的不稳定运行。本文提出了一种简化的拓扑结构来避免这些问题。转换器可以将存储在母线电容器中的附加能量返回给电源,从而维持母线电容器的电压水平。推导了变换器的设计方程,并用matlab Simulink对电路的运行进行了验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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