基于SSFR试验的异步电动机匝间故障建模与仿真

Mabrek Abdelhakim, Hemsas Kameleddine
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引用次数: 2

摘要

本文提出了一种利用静止频率响应试验建立鼠笼式异步电动机定子绕组短路匝数简化模型的新思路。由于该方法是静止状态测试,因此可以在不受电机或负载运行条件变化影响的情况下提供更高的参数估计精度。然而,高性能的现场定向控制或IM的诊断目的需要准确的电气参数知识。此外,我们建议通过多笼等效电路(EC)对IM进行建模,使我们能够准确地考虑深杆效应。所提出的方法的具体优点是,我们可以使用故障模拟器在几个级别上创建一个真正的SCT,以便在每种故障严重程度的情况下估计EC模型参数,对被测机器的风险概率较低,并且费用相对适中。首先对健康机进行了识别并进行了实验验证,然后将该模型成功地用于研究具有SCT故障的IM的暂态和稳态行为,具有实际的科学价值。
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Induction motor inter-turn fault modeling and simulation using SSFR test for diagnosis purpose
This paper presents a new idea to establish a simplified model of the short-circuit turns (SCT), in the stator winding of the squirrel-cage induction motor (IM) using standstill frequency response test (SSFR). This method may offer more precision in parameters estimation independent of variations in motor or load operating conditions since it is at standstill test. However, high-performance field-oriented control, or diagnosis purpose of the IM requires accurate knowledge of the electrical parameters. Furthermore, we propose to model the IM by a multiple cage equivalent circuit (EC) that enables us to take into account the deep bar effect with accuracy. The specific advantage of the proposed method that we can create a true SCT at several levels using fault simulator in order to estimate the EC model parameters in each case of fault severity, with a low probability of risk to the machine being tested, and a relatively modest expense. At the first time the healthy machine is identified and experimentally validated, then the models have been successfully used to study the transient and steady-state behavior of the IM with SCT fault, which a practically oriented scientific value.
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