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Inherent Chaotic Behavior in Vector Control Drives of Induction Machines

机译:感应电机矢量控制驱动器中的固有混沌行为

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摘要

In the present article, the existence of chaotic behavior in vector control drives of induction machines is investigated, and a method for avoiding this phenomenon is proposed. It is shown that, contrary to previous research, not only do errors in the estimation of rotor and stator resistances and pulse-width modulation switching techniques cause chaotic behavior in the drives, but these drives may show this phenomenon inherently even with exact parameters. Also, a modified second-order map is introduced to analyze and achieve necessary conditions for the occurrence of bifurcation and chaotic responses. Using this map, the bounds of different parameters to avoid chaotic response can be determined. In addition, a method to compute the largest Lyapunov exponent is explained and implemented to the system for proving the existence of chaotic response. Finally, an experimental setup is prepared to verify analytical and numerical results.
机译:在本文中,研究了感应电机矢量控制驱动器中混沌行为的存在,并提出了一种避免这种现象的方法。结果表明,与先前的研究相反,不仅转子和定子电阻的估计误差以及脉宽调制切换技术在驱动器中引起混沌行为,而且即使在使用精确参数的情况下,这些驱动器也可能固有地显示这种现象。此外,引入了修改后的二阶映射图,以分析并获得发生分叉和混沌响应的必要条件。使用该图,可以确定避免混沌响应的不同参数的范围。另外,解释并计算了最大李雅普诺夫指数的方法,并将其用于证明混沌响应存在的系统。最后,准备了一个实验装置来验证分析和数值结果。

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