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A Generalized Mesh-Based Thermal Network Model for SPM Machines Combining Coupled Winding Solution

机译:基于耦合绕组解决方案的SPM机器的广义网状热网络模型

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In this article, a new equivalent thermal network (ETN) model for surface-mounted permanent magnet machines is proposed by applying a mesh-based method with bidirectional coupled winding solution. The key is to couple the winding temperature distributions with thermal network meshes in stator dynamically. First, the meshing method is proposed and combined in the lumped parameter thermal model to obtain temperature distributions instead of the average temperature. The mesh elements have identical shapes and unified thermal conductivity, which can greatly enhance the modeling flexibility and efficiency. Second, the slot winding is established by a 2-D analytical solution method under segmented boundaries with a temperature gradient. Then, the winding solution is coupled with mesh nodes and integrated in the ETN model to accurately predict the temperature distributions in slot including the maximum temperature and position offset. Finally, the effectiveness of the proposed ETN model is verified by comparison with the finite-element analysis and experimental results.
机译:在本文中,通过使用双向耦合绕组解决方案应用基于网格的方法,提出了一种用于表面安装的永磁机的新的等效热网络(ETN)模型。关键是动态地将绕组温度分布耦合,热网在定子中动态地啮合。首先,提出啮合方法并在集块参数热模型中组合以获得温度分布而不是平均温度。网格元件具有相同的形状和统一的导热率,这可以大大提高建模灵活性和效率。其次,通过具有温度梯度的分段边界下的2-D分析解决方法建立槽绕组。然后,绕组解决方案与网状节点耦合并集成在ETN模型中,以精确地预测包括最大温度和位置偏移的槽中的温度分布。最后,通过与有限元分析和实验结果进行比较来验证所提出的ETN模型的有效性。

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