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Dead-Zone Digital Controllers for Improved Dynamic Response of Low Harmonic Rectifiers

机译:死区数字控制器,用于改善低谐波整流器的动态响应

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This paper introduces a simple digital control method that enables fast regulation of the output voltage in low harmonic rectifiers with power factor correction (PFC). The method is based on the use of an insensitive region, i.e., "dead-zone," in analog-to-digital conversion, for elimination of the output capacitor voltage ripple in the feedback loop. The dead-zone can either be fixed and larger than the maximum ripple magnitude, or it can be dynamically adjusted in accordance with the output load. Simple implementations of these two dead-zone controllers are shown on an experimental completely digitally controlled 250-W boost PFC operating at 200-kHz switching frequency. The experimental results show that this control method results in low current harmonics and improved load transient responses, which are significantly faster than in low-harmonic rectifiers with conventional low-bandwidth voltage-loop controllers.
机译:本文介绍了一种简单的数字控制方法,该方法可通过功率因数校正(PFC)快速调节低谐波整流器中的输出电压。该方法基于在模数转换中使用不敏感区域,即“死区”,以消除反馈环路中的输出电容器电压纹波。死区可以是固定的并且大于最大纹波幅度,也可以根据输出负载进行动态调整。这两个死区控制器的简单实现在一个实验性的完全数字控制的250W升压PFC上以200kHz的开关频率运行。实验结果表明,这种控制方法可产生低电流谐波并改善负载瞬态响应,这比采用传统低带宽电压环路控制器的低谐波整流器要快得多。

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