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首页> 外文期刊>IEEE Transactions on Energy Conversion >A combined finite element-state space modeling environment for induction motors in the ABC frame of reference: the blocked-rotor and sinusoidally energized load conditions
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A combined finite element-state space modeling environment for induction motors in the ABC frame of reference: the blocked-rotor and sinusoidally energized load conditions

机译:ABC参考系中感应电动机的组合有限元状态空间建模环境:堵转转子和正弦通电负载条件

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摘要

The combined finite element-state space (CFE-SS) modeling environment was used to predict the performance of a 1.2 hp, three-phase case-study squirrel cage induction motor under blocked rotor and typical load operating conditions. The nature of this CFE-SS environment allows one to rigorously account for the impact of space harmonics generated by the magnetic circuit, winding, and cage geometric, as well as layout peculiarities and magnetic saturation, on the current and torque profiles, and ohmic losses in the stator armature and cage. This includes the ability to predict the profiles of connector and bar currents. The results of the CFE-SS simulations compare favorably with blocked rotor and load experimental test data. Potential capabilities of this CFE-SS modeling environment, and its use in impacting motor design decisions, are discussed in the light of reported findings.
机译:组合的有限元状态空间(CFE-SS)建模环境用于预测1.2 hp三相案例研究鼠笼式感应电动机在堵转和典型负载运行条件下的性能。这种CFE-SS环境的性质允许人们严格考虑磁路,绕组和笼形几何以及布局特性和磁饱和度对电流和转矩分布以及欧姆损耗产生的空间谐波的影响。在定子电枢和保持架中。这包括预测连接器电流和条形电流的能力。 CFE-SS仿真的结果与堵转和负载实验测试数据相比具有优势。根据报告的发现,讨论了这种CFE-SS建模环境的潜在功能及其在影响电机设计决策中的用途。

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