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Steady-State Analysis of Power Factor Correctors with a Fast Output-Voltage Feedback Loop

机译:快速输出电压反馈回路功率因数校正器稳态分析

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When a Power Factor Corrector (PFC) is designed with a fast output-voltage feedback loop, the study of the power stage varies in comparison with the one carried out with a slow output-voltage feedback loop. This is a consequence of the voltage ripple that appears in the control signal. The static behaviour of a PFC with a fast output-voltage feedback loop is studied in this paper using two parameters: the module of the relative voltage ripple on the control signal and its phase angle. The total power processed by the PFC depends on these parameters, which do not change with the load and which determine the Total Harmonic Distortion (THD) and the Power Factor (PF) at the input of the PFC. Furthermore, these parameters also determine the maximum power that can be processed by the converter while still complying with EN 61000-3-2 regulations for Class A and Class B equipment. When the converter must comply with the aforementioned regulations for Class C or Class D equipment, however, the compliance does not depend on the power processed by the PFC and not all the possible combinations of the relative ripple of the control signal and of its phase angle manage to comply with these regulations. As regards the bulk capacitor, its value for a given value of the output voltage ripple is also a function of both the aforementioned parameters. Finally, the study was verified by simulation and in a prototype.
机译:当功率因数校正器(PFC)设计有快速输出电压反馈回路时,与使用慢速输出电压反馈回路执行的电源级的研究相比变化。这是控制信号中出现的电压纹波的结果。本文使用两个参数研究了PFC具有快速输出电压反馈回路的PFC的静态行为:控制信号上相对电压纹波的模块及其相位角。由PFC处理的总功率取决于这些参数,该参数不会随负载而不会改变,并且在PFC的输入时确定总谐波失真(THD)和功率因数(PF)。此外,这些参数还确定了转换器可以处理的最大功率,同时仍遵守A类和B类设备的en 61000-3-2规则。然而,当转换器必须遵守上述C类或D类设备时,顺应性不依赖于PFC处理的电源,而不是控制信号的相对纹波的所有可能组合和其相位角设法遵守这些法规。关于散装电容器,其对输出电压纹波的给定值的值也是上述参数的函数。最后,通过模拟和原型验证了该研究。

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