A non-isolated PFC bridgeless SEPIC-Cuk converter with adaptive PI controller for induction motor

R. Suguna, S. Tamil Selvi, K. Mohana Sundaram, Pradeep Katta
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Abstract

In general, the induction motor (IM) is extremely nonlinear in nature and frequency dependent. In most cases, the power generated by the IM has a low power factor (PF), which exhibits detrimental effect on the extent to which the whole transmission and distribution system functions. Since there exists more current harmonics as an outcome of minimized PF, the efficiency of the power system suffers due to transmission line heating and voltage distortion characteristics. Therefore, this paper proposes a power factor correction (PFC) method to overcome the aforementioned issues. Here, by the utilization of AC-DC bridgeless SEPIC-Cuk converter, the power quality is improved by reducing reactive power consumption and enabling better control of voltage and current outputs. To maintain the stable DC link voltage with reduced ripples, the adaptive proportional-integral (PI) controller is used in this work. The three-phase voltage source inverter (VSI) transitioning function is controlled by cascaded fuzzy logic (CFL) controller, which is also utilized for regulating the speed of the three-phase IM. Implementing the proposed control strategy improves power quality significantly by reducing total harmonic distortion (THD). The proposed system is simulated in the MATLAB platform and the attained outcomes, it is clear that the proposed system is highly effective.
带自适应 PI 控制器的用于感应电机的非隔离 PFC 无桥 SEPIC-Cuk 转换器
一般来说,感应电机 (IM) 具有极强的非线性和频率依赖性。在大多数情况下,感应电动机产生的电能功率因数(PF)较低,这对整个输配电系统的运行产生了不利影响。由于功率因数越低,电流谐波越多,输电线路发热和电压畸变特性会降低电力系统的效率。因此,本文提出了一种功率因数校正(PFC)方法来克服上述问题。通过使用交直流无桥 SEPIC-Cuk 转换器,可以减少无功功率消耗,更好地控制电压和电流输出,从而改善电能质量。为了保持稳定的直流链路电压并减少纹波,本研究采用了自适应比例积分(PI)控制器。三相电压源逆变器 (VSI) 的转换功能由级联模糊逻辑 (CFL) 控制器控制,该控制器还用于调节三相 IM 的速度。通过降低总谐波失真(THD),实施所提出的控制策略可显著改善电能质量。建议的系统在 MATLAB 平台上进行了仿真,结果表明建议的系统非常有效。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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