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Stability issues and modelling of ripple-based constant on-time control schemes operating in discontinuous conduction mode

机译:不连续导通模式下基于纹波的恒定导通时间控制方案的稳定性问题和建模

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摘要

Ripple-based constant on-time (RBCOT) control schemes have recently received much attention for the DC converters used in many applications, mainly because of the relatively high efficiency under light-load condition while preserving other features such as fast step-load response and small component count. Since the converter is usually operated under discontinuous conduction mode (DCM) under light-load condition, an effort to investigate the RBCOT schemes under DCM is practically important. Rigorous mathematical analyses are used to investigate the feedback stability issues of the buck converters using RBCOT control schemes operating in DCM. Two RBCOT control schemes are considered: the basic RBCOT scheme and the basic RBCOT with virtual-inductor-current signal (VICRBCOT). 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. A proper design procedure to maintain stability for both the continuous conduction mode and the DCM operations in VICRBCOT converters is proposed and verified.
机译:基于纹波的恒定导通时间(RBCOT)控制方案最近在许多应用中得到了广泛的关注,主要是因为在轻载条件下效率相对较高,同时保留了快速阶跃负载响应和元件数量少。由于转换器通常在轻载条件下以不连续导通模式(DCM)工作,因此研究DCM下的RBCOT方案的工作实际上很重要。严格的数学分析用于研究使用DCM中运行的RBCOT控制方案的降压转换器的反馈稳定性问题。考虑了两种RBCOT控制方案:基本RBCOT方案和带有虚拟电感器电流信号的基本RBCOT(VICRBCOT)。事实证明,它对于在DCM中运行的基本RBCOT转换器始终是稳定的,但VICRBCOT转换器并非如此。提出并验证了在VICRBCOT转换器中为连续导通模式和DCM操作维持稳定性的适当设计程序。

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