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FLC-FPGA based digital controller for boost PFC SMPS without current measurement

机译:基于FLC-FPGA的数字控制器,无需电流测量即可实现升压PFC SMPS

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Diode based bridge rectifiers (AC to DC power converters) are the widely used power supplies. The major drawbacks of the conventional diode bridge rectifiers and thyristor-based rectifiers (nonlinear loads) are low power factor and high current harmonics in AC supply. This paper presents the design of a digital controller for continuous conduction mode boost converter with power factor correction on Xilinx FPGA. It is designed to minimize or reduce input current harmonic distortion by reducing the total harmonic distortion (THD) and improving the power factor of power supplies. The pre-calculated duty cycle control is implemented in FPGA for power factor correction in order to avoid the costly and complex process of current measurement. To obtain stable output voltages even in the presence of uncertainties (load variations) and disturbances (input voltage variations) a voltage loop with a fuzzy logic controller is included.
机译:基于二极管的桥式整流器(AC至DC电源转换器)是广泛使用的电源。传统二极管桥式整流器和基于晶闸管的整流器(非线性负载)的主要缺点是交流电源中的功率因数低和电流谐波高。本文介绍了在Xilinx FPGA上具有功率因数校正功能的连续传导模式升压转换器数字控制器的设计。它旨在通过降低总谐波失真(THD)并提高电源的功率因数来最小化或减少输入电流谐波失真。预先计算的占空比控制在FPGA中实现,以进行功率因数校正,从而避免了昂贵且复杂的电流测量过程。为了即使在存在不确定性(负载变化)和干扰(输入电压变化)的情况下也能获得稳定的输出电压,包括了带有模糊逻辑控制器的电压环路。

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