用混合滤波器改善糖厂直流电机传动的电能质量

Gaber M. Ahmed, Fareed. M. Mohamed, Mohamed Nosier
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摘要

电能质量管理是当今工业面临的主要问题。这一问题主要是由于电网谐波的产生。由于变速驱动器消耗的非正弦电流,越来越多的变速驱动器在配电系统中产生了大量的谐波。众所周知,为了获得更好的电能质量,电压和电流波形应该是正弦波。但在实际应用中存在一定程度的失真,这种现象被称为“谐波失真”。电力系统中普遍存在电压谐波。尽管电子和非线性设备灵活、经济和节能,但它们可能会产生谐波电流,消耗过多的无功功率,从而降低电能质量。使用滤波器可以减少谐波。两种类型的滤波器被用于谐波失真抑制,即无源滤波器和有源滤波器。本文提出了一种新的混合型(无源和有源)电力滤波器的设计方法,以减少谐波失真,从而提高功率因数,降低成本,克服上述问题。仿真结果表明,该混合滤波器具有良好的谐波和无功补偿特性。在这种情况下,总谐波失真(THD)符合IEEE 519/1992的标准值。对所研究的直流电机驱动系统的实际结果进行了验证,并与计算机仿真的MATLAB模型结果进行了比较。利用MATLAB程序2010对所研究的非线性系统进行了仿真。
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Power quality improvement of sugar factories dc motor drive using hybrid filter
Power quality management is the main problem facing industry today. This problem is mainly due to the generation of electric network harmonics. The growing use of variable speed drives produces a large amount of harmonics in distribution systems because of the non-sinusoidal currents consumed by these drives. It is well known that for better quality of power, the voltage and current waveforms should be sinusoidal. But in actual practice it is somewhat distorted and this phenomenon is called “Harmonic Distortion”. Voltage harmonics are generally present in the utility power supply network. Even though electronic and non-linear devices are flexible, economical and energy efficient, they may degrade power quality by creating harmonic currents consuming excessive reactive power. Harmonic can be reduced using filters. Two types of filters have been utilized for harmonic distortions suppression namely passive and active filters. The present paper provides a method for designing a new hybrid (passive and active) power filters to reduce harmonic distortion and hence improve the power factor, reduce the cost and overcome all above problems. The simulation results certificate that the present hybrid filter (HAPF) causes perfect harmonics and reactive power compensation characteristics. In this case the total harmonic distortion (THD) meet standard values according to the IEEE 519/1992. The practical results of the studied dc motor drive system have been validated and compared with computer simulation MATLAB model results. The simulation results of this nonlinear studied system have been carried out with MATLAB Program 2010.
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