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Novel random switching PWM technique with constant sampling frequency and constant inductor average current for digital-controlled converter

机译:具有恒定采样频率和恒定电感平均电流的新型随机开关PWM技术用于数控转换器

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A new two-dimensional random switching PWM technique is proposed to reduce the dominant harmonic clusters while retaining constant average inductor current and constant sampling frequency. The special feature of constant average inductor current can reduce the output voltage ripple. And the controller parameters of digital-controlled power converter are not required to change which is quite essential to digital-controlled system. Current random PWM methods are discussed and compared with the proposed method in this paper. It will be shown that the presented method is with the merits of randomly changes switching frequency while keeping constant sampling frequency and average inductor current. An FPGA-based digital-controlled buck converter experimental system has been set up. The specifications of the converter includes: input voltage = 5 V, output voltage = 1.5 V and switching frequency = 200 kHz. The proposed random switching pattern is implemented by software. Experimental results demonstrate the effectiveness of the proposed random switching pattern.
机译:提出了一种新的二维随机开关PWM技术,以减少主导谐波群,同时保持恒定的平均电感器电流和恒定的采样频率。恒定平均电感器电流的特殊功能可以减少输出电压纹波。并且不需要改变数字控制功率转换器的控制器参数,这对于数字控制系统来说是非常重要的。讨论了当前的随机PWM方法,并将其与本文提出的方法进行了比较。结果表明,所提出的方法具有随机改变开关频率,同时保持恒定的采样频率和平均电感电流的优点。建立了基于FPGA的数控降压转换器实验系统。转换器的规格包括:输入电压= 5 V,输出电压= 1.5 V,开关频率= 200 kHz。所提出的随机切换模式是通过软件实现的。实验结果证明了所提出的随机切换模式的有效性。

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