控制理论(社会学)
消磁场
观察员(物理)
磁铁
断层(地质)
工程类
电流(流体)
控制工程
计算机科学
控制(管理)
物理
磁场
电气工程
地质学
磁化
地震学
人工智能
量子力学
作者
Kaihui Zhao,Wangke Dai,Sicheng Wu,Pengqi Qiu,Wenchang Liu,Gang Huang
标识
DOI:10.1016/j.ijepes.2022.108325
摘要
Temperature and other factors will cause the permanent-magnet flux to demagnetize. The demagnetization fault inevitably results in the prediction error since the finite-control-set model-predictive current control (FCS-MPCC) method is sensitive to the parameter variation of permanent magnet synchronous motor (PMSM). This paper presents a improved super-twisting-observer-based FCS model-predictive fault-tolerant current control (ISTO-based FCS-MPFTCC) method to compensate for the prediction error caused by the demagnetization fault. The unified PMSM model of healthy and demagnetized is first derived. Next, a improved super-twisting-observer (ISTO) is designed to detect permanent-magnet flux. The estimated permanent-magnet flux updated the prediction model. Thus, the presented method performs fault-tolerant current-control of PMSM on the demagnetization fault. It eliminates the influence caused by the demagnetization fault. The experiment results validate the effectiveness of the presented ISTO-based FCS-FCS-MPFTCC method.
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