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Hardware Implementation of Single Phase Power Factor Correction System using Micro-controller

机译:用微控制器实现单相功率因数校正系统的硬件实现

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Rapid increase of consumers in electronics devices and the use of mains rectification circuits inside these electronic devices is the root cause of mains harmonic distortion. Automatic power factor correction techniques can be applied to the industries, power systems and households to make them stable inturns increases the efficiency of system as well as the apparatus. This paper deals with the hardware design of active power factor correction circuit employing boost converter which is used to boost the DC voltages with a controller based on PID control strategy. The pulses given to power switches by pulse width modulation techniques generated by utilizing micro-controller board, Arduino thus obviating the need of complex hardware circuitry. MATLAB/SIMULINK was used to design and tune the PID controller parameters. The simulation results are matching with the predictions and the same was implemented as hardware. The waveforms various test points and across capacitors were obtained, studied and compared with the theoretical waveforms and are found to be in precise proximity of theoretical waveforms.
机译:电子设备用户的迅速增加以及这些电子设备内部使用的电源整流电路是电源谐波失真的根本原因。自动功率因数校正技术可应用于工业,电力系统和家庭,以使其稳定转数,从而提高系统和设备的效率。本文研究了采用升压变换器的有源功率因数校正电路的硬件设计,该变换器用于基于PID控制策略的控制器对直流电压进行升压。通过使用微控制器板(Arduino)生成的脉冲宽度调制技术,将电源脉冲提供给电源开关,从而消除了对复杂硬件电路的需求。 MATLAB / SIMULINK用于设计和调整PID控制器参数。仿真结果与预测相匹配,并且作为硬件实现。获得了各种测试点和电容器两端的波形,对其进行了研究并与理论波形进行了比较,发现它们与理论波形非常接近。

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