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A normalized digital compensator for variable frequency PWM

机译:变频PWM的归一化数字补偿器

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Implementing variable frequency modulation using low-cost digital signal processors introduces two main design issues: variability in the converter response due to the modulator delay, and a widely varying controller response due to the changing sampling period. While the first issue has been modeled several times in literature, the second has been largely ignored, and becomes an even greater issue as the frequency range is increased. As a solution, a digital compensator with adaptive gains that is normalized against frequency variations is proposed. A method for calculating the coefficients is also provided, along with a theoretical analysis of the converter frequency response. The frequency-normalized compensator is then implemented on a 180W prototype dc-dc converter, and the improvements in converter stability and system bandwidth are verified experimentally using a frequency response analyzer. For a frequency range of 25–75kHz, bandwidth improvements of up to 300% are shown for the prototype system.
机译:使用低成本数字信号处理器实现可变频率调制会带来两个主要设计问题:由于调制器延迟而引起的转换器响应变化,以及由于采样周期变化而导致的控制器响应变化很大。尽管第一个问题在文献中已被多次建模,但第二个问题在很大程度上已被忽略,随着频率范围的增加,问题甚至更大。作为解决方案,提出了具有自适应增益的数字补偿器,其针对频率变化进行了归一化。还提供了一种计算系数的方法,以及转换器频率响应的理论分析。然后将频率归一化补偿器安装在一个180W原型DC-DC转换器上,并使用频率响应分析仪通过实验验证了转换器稳定性和系统带宽的改进。对于25–75kHz的频率范围,原型系统的带宽提高了300%。

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