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Analysis and Extension of the Canonical Model applied to DC-DC converters with Input Filter and Output Post-filter

机译:具有输入滤波器和输出后置滤波器的DC-DC转换器的规范模型的分析和扩展

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Sometimes a post-filter is implemented at the output of the converter, as there are applications that require a very low output voltage ripple or output current ripple. On the other hand, the use of an LC filter at the input of the converter is implemented with the aim of reducing electromagnetic interference or due to special specifications. As it is well known the implementation of both filters affect the dynamics of the system, therefore it is important to have the transfer functions that consider the effect of both filters in order to have an optimal design of the compensator and guarantee the stability of the system. In the existing literature, the effects of the input filter and post-filter have been addressed separately, the main objective of this paper is to analyze the dynamics of the system and extend the canonical model in order to obtain general transfer functions such as control to output voltage that involve the effect of both filters and even considering the feedforward of output current and input voltage. The phase-shifted full-bridge converter has been selected in order to validate the control to output voltage transfer function in an experimental and simulated way.
机译:有时,在转换器的输出端实现后置滤波器,因为有些应用需要非常低的输出电压纹波或输出电流纹波。另一方面,为了减少电磁干扰或由于特殊规格,在转换器的输入端使用LC滤波器。众所周知,两个滤波器的实现都会影响系统的动力学,因此,重要的是要考虑到两个滤波器的作用的传递函数,以实现补偿器的最佳设计并保证系统的稳定性。 。在现有文献中,分别讨论了输入滤波器和后置滤波器的影响,本文的主要目的是分析系统的动力学并扩展规范模型,以获得诸如控制等通用传递函数。输出电压涉及两个滤波器的影响,甚至会考虑输出电流和输入电压的前馈。选择移相全桥转换器是为了以实验和仿真的方式验证对输出电压传递函数的控制。

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