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A quick and simplified approach for understanding the dynamics of the SEPIC converter for low voltage applications: Simulation study

机译:一种快速简化的方法,用于了解低压应用的SEPIC转换器的动态:仿真研究

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摘要

Designing the feedback compensator for the SEPIC (single ended primary inductance converter) converter is quite difficult due to the extreme amount of phase shift in the power stage and occurrence of double resonance. Hence the current mode control, which increases the complexity of the system, is the most commonly adapted for stabilizing the converter. However, the careful observation of the frequency response of power stage, which depends on the filter components and equivalent series resistance of the capacitor, of the power stage makes the process of controlling the dynamics of the converter easy. Sometimes the frequency response of the power stage of the converter is free of double resonance with minimum phase shift and resembles the second order converter. So, one can develop the compensator network similar to the second order converter. In this paper, the design of controller for the SEPIC converter based on single loop feedback control is presented without the need of current mode control and its associated complexity. The presented analysis does not require the complicated methods such as the principal component analysis and the model order reduction but it is as simple as observing the bode plot of the power stage of the converter. The entire simulation is carried out in Pspice.
机译:设计用于SEPIC的反馈补偿器(单端初级电感转换器)转换器由于功率级的极端相位和双共振的发生而非常困难。因此,当前模式控制增加系统的复杂性,是最常用的,适用于稳定转换器。然而,仔细观察功率级的功率级的频率响应,这取决于电源级的电容器的滤波器分量和等效串联电阻使得能够轻松控制转换器的动态的过程。有时转换器的功率级的频率响应是不具有最小相移的双共振,并类似于二阶转换器。因此,可以开发类似于二阶转换器的补偿器网络。本文介绍了基于单环反馈控制的SEPIC转换器的控制器的设计,而不需要电流模式控制及其相关复杂性。所提出的分析不需要复杂的方法,例如主成分分析和模型顺序减少,但它与观察转换器的功率级的Bode曲线一样简单。整个模拟是在PSPICE中进行的。

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