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首页> 外文期刊>IEEE Transactions on Power Electronics >Integration of Interturn Fault Diagnosis and Torque Ripple Minimization Control for Direct-Torque-Controlled SPMSM Drive System
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Integration of Interturn Fault Diagnosis and Torque Ripple Minimization Control for Direct-Torque-Controlled SPMSM Drive System

机译:直接扭矩控制SPMSM驱动系统的interrurturn故障诊断和扭矩脉动最小化控制的整合

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摘要

This article proposes an integration method for interturn fault diagnosis and torque ripple minimization control of direct-torque-controlled surface-mounted permanent magnet synchronous machine (SPMSM) drive system without requiring the specific fault severity (short-circuited turn ratio, current). In this method, the interturn fault is detected and located based on the amplitude and initial phase angle of the zero-sequence voltage component (ZSVC). Both the torque injection and the improved flux observer are applied to reduce the torque ripple caused by the interturn fault. Furthermore, the torque injection and the improved flux observer are directly calculated by using the already obtained amplitude and initial phase angle of the ZSVC during the fault diagnosis process, without requiring the specific values of short-circuited turn ratio and fault current. The experimental results validate the effectiveness of the proposed integration method for the direct-torque-controlled SPMSM drive system.
机译:本文提出了一种用于干扰故障诊断和扭矩脉动最小化的直接扭矩控制的表面安装永磁同步机(SPMSM)驱动系统的扭矩脉动最小化控制的集成方法,而无需具体的故障严重程度(短路匝数比,电流)。在该方法中,基于零序电压分量(ZSVC)的幅度和初始相位来检测和定位干扰故障。扭矩注入和改进的磁通观测器都施加,以减少由干扰故障引起的扭矩纹波。此外,通过在故障诊断过程中使用ZSVC的已经获得的幅度和初始相位来直接计算扭矩注入和改进的通量观察者,而不需要短路转匝比和故障电流的特定值。实验结果验证了直接扭矩控制的SPMSM驱动系统所提出的集成方法的有效性。

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