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Flux Waveform Control in Electrical Steels using Digital Feedback Technique

机译:使用数字反馈技术电气钢中的磁通波形控制

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There are increasing calls for more accurate power loss measurements in electrical steels. This paper presents the flux controlling technique in electrical steers using digital feedback technique. The various parameters that affect the measuring efficiency have also been analyzed. Digital feedback technique is used since it has the advantages of good reproducibility of the waveform due to ease of calibration and its stability with respect to time as well as reduces human error. Furthermore, it has no oscillation of the control system compared to the analog feedback technique. This technique was designed by using Simulink, MATLAB R12, Version 6.0. The digital feedback circuitry, which has been designed, is proved to be successful where the output waveform is a sinusoidal waveform of 50Hz. It is shown that the harmonic component increases as the distortion factor increases. It also indicates that the average distortion factor for n~(th) harmonic to the distorted waveform is typically less than 1.5 and meaningful measurements can be performed.
机译:电气钢中的更准确的功率损耗测量值越来越多。本文介绍了使用数字反馈技术的电气操舵磁通控制技术。还分析了影响测量效率的各种参数。使用数字反馈技术,因为由于易于校准,并且相对于时间的稳定性以及减少人为错误,它具有波形的良好再现性的优点。此外,与模拟反馈技术相比,它没有控制系统的振荡。通过使用Simulink,Matlab R12,6.0版设计了该技术。已经设计的数字反馈电路被证明是成功的,其中输出波形是50Hz的正弦波形。结果表明,随着失真因子增加,谐波分量增加。它还表明,对于扭曲波形的N〜(Th)谐波的平均失真因子通常小于1.5,并且可以执行有意义的测量。

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