Minimization of Copper Losses during Field-oriented Controlled Induction Motor Magnetization and Demagnetization

O. Tolochko, D. Kaluhin, P. Rozkariaka
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引用次数: 1

Abstract

The article presents the design of optimal rotor flux control laws, which minimize losses from flux-producing stator and rotor current components of an induction motor with field-oriented control system. The optimal parameters of linear and exponential magnetization and demagnetization algorithms were determined and analytical expressions to calculate least possible losses in IM windings for sinus-hyperbolical, exponential and linear rotor flux change algorithms are presented. The comparative analysis of considered rotor flux control algorithms was carried out and the recommendations for their implementation in various operation modes were given.
磁场定向控制感应电机充磁和退磁过程中铜损耗的最小化
为使感应电动机磁场定向控制系统中产生磁通的定子和转子电流元件的损耗最小,提出了转子磁通最优控制律的设计。确定了线性、指数型磁化和退磁算法的最优参数,给出了正弦双曲型、指数型和线性型转子磁通变化算法中IM绕组最小损耗的解析表达式。对所考虑的转子磁链控制算法进行了对比分析,并给出了在各种运行模式下的实施建议。
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