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首页> 外文期刊>IEEE Transactions on Industry Applications >Experimental Validation of 3-D Magnet Eddy Current Loss Prediction in Surface-Mounted Permanent Magnet Machines
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Experimental Validation of 3-D Magnet Eddy Current Loss Prediction in Surface-Mounted Permanent Magnet Machines

机译:表面安装永磁电机中3-D涡流损耗预测的实验验证

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摘要

This paper presents the experimental validation of three-dimensional (3-D) Fourier method employed for predicting magnet eddy current loss in surface-mounted permanent magnet (SPM) machines. The magnet loss is measured for a 12-slot 14-pole SPM machine from experimental tests when the machine is operated with inverter under locked rotor conditions by repeating tests with two rotors, one with magnets and one without. The eddy current loss associated with each significant harmonic in the captured armature currents is predicted separately employing the developed method and the total magnet loss is evaluated by applying the principle of superposition. The magnet loss at real operating conditions of the machine is predicted from the method using the phase current captured when the SPM is operating at its maximum speed conditions. The result is used as an example to devise an effective means of further reduction in the total magnet loss.
机译:本文介绍了用于预测表面贴装式永磁(SPM)机器中的磁体涡流损耗的三维(3-D)傅里叶方法的实验验证。在实验中,当一台12槽14极SPM电机通过逆变器在锁定转子条件下运行时,通过重复测试两个转子(一个带磁铁,一个带磁铁,一个不带转子)进行测试,从而测量了磁体损耗。使用开发的方法分别预测与捕获的电枢电流中的每个有效谐波相关的涡流损耗,并通过应用叠加原理评估总的磁损耗。根据该方法,使用SPM在其最大速度条件下运行时捕获的相电流,通过该方法预测电机实际运行条件下的磁体损耗。该结果被用作示例以设计出进一步减少总磁体损耗的有效手段。

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