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Saturation Generated Oscillations in Voltage-Mode Digital Control of DC–DC Converters

机译:DC-DC转换器的电压模式数字控制中饱和产生的振荡

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Dc–dc converters often exhibit undesirable oscillations due to their nonlinear dynamics. Digitally controlled converters have further degrees of nonlinearity in terms of quantization in the analog to digital converter and the digital pulse width modulator, giving rise to the well known phenomenon of limit cycle oscillations. In this study, a different and hitherto unreported class of oscillations in digitally controlled converters has been reported, and its origin has been traced to asymmetric saturation in the duty cycle. The study attempts to provide physical insights behind this phenomenon of saturation generated oscillation (SGO), and to identify the converter-system components responsible for it. The challenges in the traditional stability analysis of such a system are highlighted, followed by a simplified analysis leading to the calculation of the oscillation-free operating-zone, and some of the effects of system parameters on the SGO. The results have been used to show some potential ways in which the oscillation can be avoided by using SGO-immune designs. Simulation and experimental results have been provided to illustrate the points and substantiate the claims.
机译:DC-DC转换器由于其非线性动力学特性,通常会表现出不良的振荡。就模数转换器和数字脉冲宽度调制器中的量化而言,数控转换器还具有进一步的非线性度,从而引起众所周知的极限循环振荡现象。在这项研究中,已经报道了数控转换器中迄今未曾报道过的另一类振荡,并且其起源可追溯到占空比中的非对称饱和。这项研究试图提供有关这种饱和产生振荡(SGO)现象的物理见解,并确定引起该现象的转换器系统组件。强调了这种系统的传统稳定性分析中的挑战,随后进行了简化分析,从而计算出了无振荡工作区,以及系统参数对SGO的某些影响。结果已用于显示一些潜在的方式,通过使用SGO免疫设计可以避免振荡。提供了仿真和实验结果以说明要点并证实权利要求。

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