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Synchronous machine model considering dynamic losses and thermal behavior

机译:考虑动态损耗和热行为的同步电机模型

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For the development of an electrical drive system accurate modeling of the machine is essential. Usually, the motor losses caused by discrete switching of inverters are neglected during the design phase, because these losses can only be obtained by solving complex models by coupled finite element analysis (FEA). This paper presents an extended synchronous machine model including dynamic iron losses and their temperature dependency. The synchronous machine model with spatial harmonics is extended by an analytic flux linkage based approach to consider dynamic losses of the drive during the system design process. The on-line calculated losses are fed to a lumped parameter thermal network (LTPN) to track the thermal behavior of the machine. The combination of these models leads to a computationally fast electrical drive model that includes effects like switching harmonics and thermal behavior of the machine. The proposed structure reaches a good accuracy without the need of coupled FEA.
机译:对于电气驱动系统的开发,对机器进行精确建模至关重要。通常,在设计阶段可以忽略由逆变器的离散开关引起的电机损耗,因为这些损耗只能通过耦合有限元分析(FEA)求解复杂模型来获得。本文提出了一种扩展的同步电机模型,其中包括动态铁损及其温度依赖性。具有空间谐波的同步电机模型通过基于解析磁链的方法进行扩展,以考虑驱动器在系统设计过程中的动态损耗。在线计算出的损耗被馈​​送到集总参数热网络(LTPN),以跟踪机器的热行为。这些模型的组合导致了计算速度快的电驱动模型,其中包括诸如开关谐波和电机的热性能之类的影响。所提出的结构不需要耦合的FEA即可达到良好的精度。

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