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The stability modeling of ripple-based constant on-time control schemes used in the converters operating in DCM

机译:基于纹波的恒定稳定性建模在DCM中操作的转换器中使用的转换器中使用的稳定性建模

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Ripple-based constant on-time (RBCOT) control schemes have recently received much attention for the DC converters used in many applications mainly due to its high efficiency feature under light-load condition. There are control models reported for such schemes for the continuous conduction mode (CCM) operation but not for the discontinuous mode (DCM). Since the converter is usually operated in DCM under light-load condition, an effort to investigate the RBCOT schemes under DCM is practically important. Two RBCOT schemes are considered in this paper, the basic RBCOT and the RBCOT with virtual inductor current (VIC). A describing function approach and a time-domain approach are used for the investigation of the feedback stability issue of the control schemes in DCM. It is proved that it is always stable for the basic RBCOT converter operating in DCM, but that is not the case for the VICRBCOT converters. Proper VIC signal must be used to maintain stability for both the CCM and the DCM operation. The analysis results are verified with experiments.
机译:基于纹波的恒定准时(RBCOT)控制方案最近接受了许多应用中使用的直流转换器的注意力,主要是由于其在轻负载条件下的高效率特征。有针对连续导通模式(CCM)操作的这些方案报告了控制模型,但不适用于不连续模式(DCM)。由于转换器通常在轻负载条件下在DCM中操作,因此努力研究DCM下的RBCOT方案实际上是重要的。本文考虑了两个RBCOT方案,基本RBCOT和具有虚拟电感器电流(VIC)的RBCot。描述功能方法和时域方法用于研究DCM中控制方案的反馈稳定性问题。事实证明,在DCM中运行的基本RBCOT转换器始终稳定,但VICRBCOT转换器的情况并非如此。必须使用适当的VIC信号来保持CCM和DCM操作的稳定性。分析结果用实验验证。

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