临界电流模式的数字控制功率因数校正器的自调试

Y. Lai, Shang-Wei Chen, Zih-Jie Su
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引用次数: 0

摘要

本文的主题是提出一种数控功率因数校正器的自调试方法。功率因数校正器采用临界电流模式控制,以降低二极管的反向恢复损耗。功率因数校正器采用两相交错控制,减小了输出电流纹波和输出电容值。对于给定的规格,包括带宽和相位裕度,控制器参数由识别的电感、电容和查找表导出。在系统启动前,实现了PFC电感、电容的辨识和控制器参数的计算。在不需要事先知道电路参数的情况下,利用所提出的自调试技术可以直接得到控制器参数。因此,所提出的技术对于解决电路元件的变化问题是非常有希望的,这将导致数字控制器的变化。前端PFC变换器的规格要求为:交流输入电压= 178v ~ 264v / 50hz,直流输出电压= 400v,输出电流= 1.3 A。实验结果将充分证实所提出的自调试技术的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Self-commissioning of digital-controlled power factor corrector with critical current mode
The main theme of this paper is to propose a self-commissioning method for digital-controlled power factor corrector. The power factor corrector is with critical current mode control in order to reduce the reverse recovery loss of diode. Moreover, two-phase interleaved control is used for the power factor corrector to reduce the output current ripple and the value of output capacitor. For a given specifications, including bandwidth and phase margin, the controller parameters are derived by the identified inductance, capacitance and look up table. The identification of PFC inductance and capacitance, and calculation of controller parameters are realized before the system start up. It is no need to know the circuit parameters in prior, the controller parameters can be derived by the presented self-commissioning technique. This proposed technique is therefore very promising to solving the circuit component variation issue which will result in the change of digital controller. The specifications of the front-end PFC converter include: AC input voltage = 178 V to 264 V/ 50 Hz, DC output voltage = 400 V and output current = 1.3 A. Experimental results will fully confirm the effectiveness of the proposed self-commissioning technique.
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