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Modelling short- and open-circuit faults in permanent magnet synchronous machines using Modelica

机译:使用Modelica对永磁同步电机中的短路和开路故障进行建模

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Electrical machine models are indispensable for describing and predicting the machine behaviour in several operating conditions. Modelling fault conditions are an attractive research area, since fault simulations allow to figure the behaviour of the electric drive and prevent damages to its components. In this study, winding failures in permanent magnet synchronous machines (PMSMs) are considered. In particular, short-circuits and open-circuits failures have been taken into account via two simple PMSM models. These models have been created using Modelica as modelling language. Feasibility of the proposed models is investigated in simulation (using Dymola environment) under the following fault conditions: single-phase open-circuit, single- and three-phase short-circuits. Moreover, models validation has been carried out through experimental tests, injecting windings failures into a fault-tolerant PMSM.
机译:电机模型对于描述和预测几种运行条件下的电机行为必不可少。对故障条件进行建模是一个有吸引力的研究领域,因为故障仿真可以确定电驱动器的行为并防止其组件损坏。在这项研究中,考虑了永磁同步电机(PMSM)中的绕组故障。特别是通过两个简单的PMSM模型已考虑了短路和开路故障。这些模型是使用Modelica作为建模语言创建的。在以下故障情况下,在仿真中(使用Dymola环境)研究了提出的模型的可行性:单相开路,单相和三相短路。此外,已经通过实验测试对模型进行了验证,将绕组故障注入到容错的PMSM中。

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