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A Symmetrical Components-based Load Oscillation Detection Method for Closed-Loop Controlled Induction Motors

机译:基于对称组件的闭环控制感应电动机的负载振荡检测方法

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This paper investigates the use of instantaneous symmetrical components (ISCs) for mechanical faults detection in inverter-fed induction motors under closed-loop control. The proposed fault detection approach is based on the computation of the ISCs of the stator currents. The positive sequence power spectral density (PSD) is estimated using ESPRIT and least squares (LS). Then, mechanical fault detection is considered as a binary hypothesis test and solved using the generalized likelihood ratio test (GLRT). Both stator currents and the modulating signals issued from the control-loops are demonstrated to be efficient for fault detection. Simulation results on an analytical model of an inverter-fed induction motor illustrate the effectiveness of the proposed approach, leading to an effective fault detection procedure for load torque oscillation in inverter-fed induction motor under closed-loop operation.
机译:本文研究了闭环控制下逆变器馈电感应电机中机械故障检测的瞬时对称组分(ISC)。所提出的故障检测方法基于定子电流的ISC的计算。使用ESPRIT和最小二乘(LS)估计正序列功率谱密度(PSD)。然后,机械故障检测被认为是使用广义似然比测试(GLRT)的二元假设试验并解决。 STATOR电流和从控制环发出的调制信号都被证明是有效的故障检测。逆变器馈电电动机的分析模型的仿真结果说明了所提出的方法的有效性,导致闭环操作下逆变器馈电电动机中负载扭矩振荡的有效故障检测过程。

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