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Harmonic reduction, power factor improvement and speed detection for 3-phase induction motor drive system

机译:三相感应电动机驱动系统的谐波降低,功率因数改善和速度检测

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Conventional Variable Frequency Drive (VFD) method for induction motor consists of nonlinear loads such as rectifier and inverter (AC-DC-AC). These nonlinear devices are the biggest cause of harmonics generation on power lines. In proposed system, passive LC filters are used to control the harmonic currents present on power lines. DSP-based variable frequency drive is designed using DSP TMS320LF2407A offers an advantage of high speed operation. This paper represents Harmonic Reduction and Power Factor Improvement technique for 3-phase Induction Motor drive system using passive LC components. Sensorless speed detection is achieved based on the analysis of blocked voltage across the non-conducting thyristors. Experimental results are taken in laboratory using 3-phase, 1Hp, 1500rpm Induction Motor. Proposed system for Harmonic Reduction is also simulated using MATLAB/SIMULINK power system toolbox.
机译:用于感应电动机的常规变频驱动(VFD)方法由非线性负载组成,例如整流器和逆变器(AC-DC-AC)。这些非线性设备是电力线上产生谐波的最大原因。在提出的系统中,无源LC滤波器用于控制电力线上存在的谐波电流。使用DSP设计的基于DSP的变频驱动器TMS320LF2407A具有高速运行的优势。本文介绍了使用无源LC组件的三相感应电动机驱动系统的谐波降低和功率因数改善技术。基于非导电晶闸管两端受阻电压的分析,实现了无传感器速度检测。实验结果是在实验室中使用三相,1Hp,1500rpm感应电动机进行的。还使用MATLAB / SIMULINK电力系统工具箱对拟议的谐波抑制系统进行了仿真。

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