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Modelling and analysis of switching DC-to-DC converters in constant-frequency current-programmed mode

机译:恒流电流编程模式下开关DC-DC转换器的建模和分析

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摘要

An analysis of dc-to-dc switching converters in constant-frequency current-programmed continuous conduction mode is performed, and leads to two significant results. The first is that a ramp function, used to eliminate a potential instability, can be chosen uniquely to assure both stability and the fastest possible transient response of the programmed current. The second is the development of an extension of the state-space averaging technique by means of which both the input and output small-signal properties of any such converter may be accurately represented by a linear small-signal equivalent-circuit model. The model is presented and experimentally verified for the cuk converter and for the conventional buck, boost, and buck-boost converters. All models exhibit basically a one-pole control-to-output transfer function response.
机译:对恒流电流编程连续导通模式下的DC-DC开关转换器进行了分析,得出两个明显的结果。首先是可以唯一选择用来消除潜在不稳定性的斜坡函数,以确保稳定性和已编程电流的最快瞬态响应。第二个是对状态空间平均技术的扩展,通过该扩展,可以通过线性小信号等效电路模型准确表示任何此类转换器的输入和输出小信号特性。针对cuk转换器以及传统的buck,boost和buck-boost转换器,提供了该模型并进行了实验验证。所有型号基本上都表现出一极控制到输出的传递函数响应。

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