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A Frequency Domain Approach for Controlling Fast-Scale Instabilities in Switching Power Converters

机译:一种控制开关电源转换器中快速尺度不稳定性的频域方法

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This paper deals with controllers of fast-scale instabilities in DC-DC switching power converters from a frequency domain standpoint with the aim of understanding their working principle and hence simplifying their design. Some approaches for controlling fast-scale instabilities and their limitations are revisited. Considering the frequency domain transfer function of already existing controllers, a simple and extended notch filter centered at half of the switching frequency is proposed to avoid these instabilities. However, a switching converter under this controller may still exhibit the undesired slow-scale instability. Accordingly, the paper explores an alternative approach based on amplifying the harmonic at the switching frequency. Numerical simulations show that the new proposed controller can concurrently improve both fast-scale and slow-scale stability margins. The results from the different controllers are contrasted in terms of stability boundaries, indicating that the last one presents a wider stability range.
机译:本文从频域的角度处理DC-DC开关电源转换器中快速尺度不稳定性的控制器,旨在了解其工作原理,从而简化其设计。讨论了一些控制快速尺度不稳定性及其局限性的方法。考虑到已经存在的控制器的频域传递函数,为避免这些不稳定性,提出了一个以开关频率的一半为中心的简单扩展陷波滤波器。但是,此控制器下的开关转换器可能仍会显示出不希望的慢速不稳定性。因此,本文探索了一种基于放大开关频率谐波的替代方法。数值仿真表明,新提出的控制器可以同时提高快标度和慢标度的稳定裕度。来自不同控制器的结果在稳定性边界方面进行了对比,表明最后一个控制器具有更宽的稳定性范围。

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