基于改进差分频闪终端的智能功率因数计量系统开环控制

S. Fahim, Sakib Shahrear Avro, S. Sarker, M. Rokunuzzaman, S. Das
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引用次数: 8

摘要

本文介绍了一种智能功率因数计量系统,通过对主干线频率的测量来测量负载的功率因数。频率的变化导致了较差的功率因数(PF),从而增加了公用费用。该系统通过在MATLAB环境下绘制实时交流功率三角形来提供准确的FF。该系统采用嵌入式系统作为控制器,能够读取主线频率、负载电压、电流及其相位差。采用初步电路将电压和电流的高值转换为嵌入式系统可读的形式。它由电位互感器(PT)、电流互感器(CT)、基于高差动频闪端子的比较器和检测负载电压和电流之间相位延迟的逻辑门组成。建立了ES与MATLAB之间的串行通信,用于绘制功率三角形,以确定精确的PF,并通过仿真和实验结果验证了所提系统的有效性。
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Improved Differential Strobe Terminal Based Open-loop Control of Smart Power Factor Metering System
This paper presents a smart power factor metering system to measure the power factor of a load by taking the frequency of a main-line. The variation of frequency makes sure the poor power factor (PF) which increases the utility charge. The proposed system provides the accurate FF by plotting a real-time AC power triangle in MATLAB environment. The system uses one embedded system as a controller that able to read the mainline frequency, load voltage, current and their phase difference. A preliminary circuit is used to transform the high value of voltage and current to the embedded system (ES) readable form. It consists of a potential transformer (PT), a current transformer (CT), high differential strobe terminal based comparator and logic gate that detects the phase delay between the load voltage and current. A serial communication between the ES and the MATLAB is established for plotting the power triangle which confirm the accurate PF. The simulation and experimental results are studied to validate the effectiveness of proposed system.
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