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Power Factor Correction Without Current Sensor Based on Digital Current Rebuilding

机译:基于数字电流重建的无电流传感器功率因数校正

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摘要

A new digital control technique for power factor (PF) correction is presented. The main novelty of the method is that there is no current sensor. Instead, the input current is digitally rebuilt, using the estimated input current in the current loop. The circuit measures the input and output voltage by means of low cost ad hoc analog-to-digital converters (ADCs). Taking advantage of the slow dynamic behavior of these voltages, almost completely digital ADCs have been designed, leaving only a comparator and an RC filter in the analog part. Avoiding measuring current can provide a significant advantage compared to analog controllers and this also helps to reduce the total cost. The ultimate objective is to obtain a low-cost digital controller that can be easily integrated as an intellectual property (IP) block into a field-programmable gate array, or an application-specific integrated circuit. The experimental results show a reasonably high PF, despite not measuring the input current, and therefore the feasibility of the method.
机译:提出了一种用于功率因数(PF)校正的新数字控制技术。该方法的主要新颖之处在于没有电流传感器。取而代之的是,使用电流环路中的估计输入电流以数字方式重建输入电流。该电路通过低成本的自组织模数转换器(ADC)测量输入和输出电压。利用这些电压的缓慢动态特性,已经设计了几乎完全数字的ADC,在模拟部分仅保留了一个比较器和一个RC滤波器。与模拟控制器相比,避免测量电流可以提供显着的优势,这也有助于降低总成本。最终目标是获得一种低成本的数字控制器,该控制器可以作为知识产权(IP)块轻松集成到现场可编程门阵列或专用集成电路中。实验结果表明,尽管未测量输入电流,但仍具有较高的PF,因此该方法可行。

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