相移串联谐振变换器不连续工作模式的分析与控制

Y. Singh, K. Viswanathan, R. Naik, J. Sabate, R. Lai
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引用次数: 29

摘要

工作在断续导通模式(DCM)下的DC-DC系列谐振变换器具有低开关损耗、高功率密度和低控制复杂性等优点。当变换器工作从DCM切换到连续导通模式(CCM)时,低开关损耗的特性就丧失了。本文对这种变换器在DCM中工作进行了深入的分析,并推导出变换器向CCM转换的两个边界条件。采用定频移相脉宽调制来调节有效占空比和调节输出电压。本文还对上述谐振频率工作进行了稳态分析。导出的边界条件有助于变换器的设计,使DCM工作,从而确保软开关特性在所有工作点。在样机上的仿真和实验结果验证了这些边界条件的极限。
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Analysis and control of phase-shifted series resonant converter operating in discontinuous mode
DC-DC series resonant converter operating in Discontinuous Conduction Mode (DCM) offers advantages in terms of low switching losses, high power density, and low control complexity. The low switching loss feature is lost when the converter operation shifts from DCM to Continuous Conduction Mode (CCM). This paper presents an in-depth analysis of such a converter operating in DCM and derives two boundary conditions under which the converter shifts to CCM. The fixed-frequency phase-shifted pulse width modulation is used to adjust the effective duty cycle and regulate the output voltage. Steady state analysis for above resonant frequency operation is also presented in this paper. The derived boundary conditions aid the design of the converter using which DCM operation and hence the soft switching feature is ensured at all operating points. Limits of these boundary conditions are verified using simulation and experimental results on a prototype converter.
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