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Zero-Crossing Point Detection Using Differentiation Circuit for Boundary Current Mode PFC Converter

机译:利用边界电流模式分化电路的零交叉点检测PFC转换器

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This paper presents a novel zero-crossing point detection method for boundary current mode boost-type PFC converter. In the conventional boundary current mode PFC converter, the zero-crossing point of inductor current is detected by observing the inductor voltage. The detection of the zero-crossing point is delayed due to the effect of the parasitic capacitance of main components in the PFC converter. As the digital controller is used in the conventional method, the detection of the zero-crossing point also delays due to the DSP's processing. Since the two major reasons, PFC converter operates under the discontinuous current mode. The power factor becomes low and the harmonic currents occur when the PFC converter operates under the discontinuous current mode. Therefore, it is required to reduce the delay time caused by the parasitic capacitance and the DSP's processing in order to make the PFC converter to operate under the boundary current mode. The proposed zero-crossing point detector is very suitable for the purpose. It is formed by the differentiation circuit, the differential amplifier circuit and RS-FF. Simulation results show that in the proposed method, the detection delay time characteristics are much improved compared with the conventional method. The PFC converter can operate under the boundary current mode with high accurate. Near unity power factor and lower input current THD are achieved in the proposed method.
机译:本文提出了一种用于边界电流模式升压式PFC转换器的新型零交叉点检测方法。在传统的边界电流模式PFC转换器中,通过观察电感电压来检测电感电流的过零点。由于PFC转换器中主要组件的寄生电容的效果,零交叉点的检测被延迟。随着在传统方法中使用数字控制器,由于DSP的处理,零交叉点的检测也会延迟。由于两种主要原因,PFC转换器在不连续电流模式下运行。功率因数变低,当PFC转换器在不连续电流模式下操作时,会发生谐波电流。因此,需要减少由寄生电容和DSP处理引起的延迟时间,以使PFC转换器在边界电流模式下运行。所提出的零交叉点检测器非常适合于目的。它由差分电路,差分放大器电路和RS-FF形成。仿真结果表明,在该方法中,与传统方法相比,检测延迟时间特性很大。 PFC转换器可以高精度地在边界电流模式下运行。在提出的方法中实现了近unity功率因数和较低输入电流THD。

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