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State and control system variables sensitivity to rotor asymmetry in the induction motor drive

机译:状态和控制系统变量对感应电动机驱动器中转子不对称的敏感性

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摘要

Purpose - The aim of this paper is to undertake analysis and comparison of the closed-loop and sensorless control systems sensitivity to the broken rotor for diagnostic purposes. For the same vector control system induction motor drive analysis concerning operation with the asymmetric motor, broken rotor fault handling and operation were investigated. Reliability, range of stable operation, fault symptoms and application of diagnosis methods based on control system variables utilization was analyzed. Design/methodology/approach - Induction motor drive vector control system synthesis was applied using the multiscalar variables of the machine model with nonlinear feedback linearization applied to use classical cascaded PI controllers for the speed-torque and flux decoupled control. Speed observer was applied for the rotor flux and rotor speed estimation for the sensorless control system synthesis. Findings - Relative sensitivity of the state and control system variables to broken rotor fault based on experimental results for the closed-loop and sensorless control systems is presented and compared. Drawbacks of using the MCSA analysis for the rotor fault diagnosis in the closed-loop and sensorless control systems are pointed. Advantages and drawbacks of the state space estimators filtering characteristics in the sensorless control system are described. Practical implications - Asymmetric IM motor drive handling and diagnosis. Broken rotor range diagnosis inconsistency using the popular MCSA method should be considered in the closed-loop and sensorless control system of the induction motor drive. Depending on the EVI motor drive application and the operation requirements the results can be used for asymmetric machine proper handling, choosing proper control system structure and control system variables for rotor fault early diagnosis. Originality/value - Sensitivity of the state and control system variables to broken rotor fault based on experimental results for the closed-loop and sensorless control systems is presented, which implies motor handling procedures and fault diagnosis.
机译:目的-本文的目的是对闭环和无传感器控制系统对转子损坏的灵敏度进行分析和比较,以进行诊断。对于同一矢量控制系统感应电动机驱动分析,涉及不对称电动机的运行,研究了转子断裂故障的处理和运行。分析了基于控制系统变量利用的可靠性,稳定运行范围,故障症状以及诊断方法的应用。设计/方法/方法-使用电机模型的多标量变量应用感应电动机驱动矢量控制系统综合,并应用非线性反馈线性化,以经典的级联PI控制器进行速度-转矩和磁通解耦控制。速度观测器用于转子磁链,转子速度估算用于无传感器控制系统综合。研究结果-根据闭环和无传感器控制系统的实验结果,提出并比较了状态和控制系统变量对转子故障的相对敏感性。指出了在闭环和无传感器控制系统中使用MCSA分析进行转子故障诊断的缺点。描述了无传感器控制系统中状态空间估计器滤波特性的优缺点。实际含义-非对称IM电机驱动器的处理和诊断。在感应电动机驱动器的闭环和无传感器控制系统中,应考虑使用流行的MCSA方法对转子范围故障进行诊断不一致。根据EVI电动机驱动器的应用和运行要求,结果可用于不对称机器的正确处理,选择适当的控制系统结构和控制系统变量以进行转子故障的早期诊断。独创性/值-根据闭环和无传感器控制系统的实验结果,给出了状态和控制系统变量对转子断裂故障的敏感性,这暗示了电机处理程序和故障诊断。

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