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Single ADC Digital PFC Controller Using Precalculated Duty Cycles

机译:使用预先计算的占空比的单ADC数字PFC控制器

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Traditional digital power factor correction (PFC) uses three sensors to measure the input and output voltages and the input current. Each sensor, especially the input current one, increases the cost of the system and generates power losses in case of resistive sensors. This paper presents a controller for boost PFC converters. It uses precalculated duty cycles generated offline, and applies them to the switch. In order to control the converter with nonnominal conditions, just one analog-to-digital converter (ADC) is used, which measures the output voltage. Measuring the average and the ripple of the output voltage with this ADC, the controller takes compensation action for changes in the input voltage but also in the load of the converter. The average value is used to control the input voltage changes, while the ripple value is used to control load changes. These two loops present low frequency bandwidth, so the ADC and the whole system can be low cost. Finally, a comparator is used to detect the zero-crossing of the input voltage, so the precalculated values are synchronized with the ac mains. In this way, the converter only uses one ADC and one comparator, both with low bandwidth. Results show that high power factor and normative compliance are reached, even under nonnominal conditions.
机译:传统的数字功率因数校正(PFC)使用三个传感器来测量输入和输出电压以及输入电流。每个传感器,特别是输入电流传感器,都会增加系统成本,并在电阻传感器的情况下产生功率损耗。本文提出了一种用于升压PFC转换器的控制器。它使用离线生成的预先计算的占空比,并将其应用于交换机。为了在非标称条件下控制转换器,仅使用一个模数转换器(ADC)来测量输出电压。控制器使用此ADC测量输出电压的平均值和纹波,控制器对输入电压以及转换器负载的变化采取补偿措施。平均值用于控制输入电压变化,而纹波值用于控制负载变化。这两个环路具有低频带宽,因此ADC和整个系统的成本可能较低。最后,使用比较器来检测输入电压的过零,因此将预先计算的值与交流电源同步。这样,转换器仅使用一个具有低带宽的ADC和一个比较器。结果表明,即使在非标称条件下,也达到了高功率因数和规范合规性。

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