Chattering reduction effect on power efficiency of IFOC based induction motor

Dedid Cahya Happyanto, A. Aditya
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引用次数: 1

Abstract

Nowadays, the strategies to control Induction Motor (IM) is growing fast. The vector control strategies give better performance than the scalar control to control IM. IFOC is one of the vector control strategies which more realistic to apply in industry, military, and transportation. However, IFOC requires Sliding Mode Control (SMC) with the Lyapunov function to ensure robustness and stability. The first-order SMC or ordinary SMC uses boundary layers technique such as the saturation function and the tangent-hyperbolic function to overcome the chattering phenomenon. The performance of boundary layer is analyzed in rotor speed response, stator current response in dq0 frame and power performance. In rotor speed response, the SMC with and without boundary layer has error steady-state less than 2%. In stator current response with dq0 frame, the boundary layer with tangent-hyperbolic function has the best performance. The power analysis shows that the boundary layer with saturation function has an active power loss of 39.16%, reactive power loss of 23.37% and apparent power loss of 30.30%. The boundary layer with tangent-hyperbolic functions has the best performance in reducing power consumption with active power loss of 41.24%, reactive power loss of 24.78% and apparent power loss of 31.96%.
基于IFOC的异步电动机的颤振抑制对功率效率的影响
目前,异步电动机的控制策略发展迅速。矢量控制策略比标量控制策略具有更好的控制性能。IFOC是一种较为现实的病媒控制策略,可应用于工业、军事和交通运输等领域。然而,IFOC需要具有Lyapunov函数的滑模控制(SMC)来确保鲁棒性和稳定性。一阶SMC或普通SMC采用饱和函数和切线双曲函数等边界层技术来克服抖振现象。分析了边界层在dq0框架下转子转速响应、定子电流响应和功率性能方面的性能。在转子转速响应方面,有无边界层的SMC稳态误差均小于2%。在dq0系定子电流响应中,具有切线双曲函数的边界层性能最好。功率分析表明,具有饱和函数的边界层的有功损耗为39.16%,无功损耗为23.37%,视在功率损耗为30.30%。具有切线双曲函数的边界层在降低功耗方面表现最好,其有功损耗为41.24%,无功损耗为24.78%,视在功率损耗为31.96%。
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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