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首页> 外文期刊>IEEE Transactions on Magnetics >Effects of chopper control circuits on core losses of permanent magnet DC motors
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Effects of chopper control circuits on core losses of permanent magnet DC motors

机译:斩波控制电路对永磁直流电动机铁损的影响

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摘要

A two-dimensional finite-element method was used to compute the armature core losses of a permanent magnet DC motor when it was operated by a chopper control circuit. A comparison is made with the losses of the same machine when it was supplied from a pure DC source under the same operating conditions. For both cases, minor hysteresis loop and eddy current correction factors due to the restored waveforms of flux densities were considered. The numerical work was carried out in conjunction with experimental work on a 1.2-hp permanent magnet DC machine, and the effects of excitation current and electronic forces revealed by the test were compared with those computed from the numerical model in order to validate the parameters used in obtaining the numerical data. According to the analysis of the example presented here, an increase in the motor core losses of 63% took place as a result of chopper operation. This indicates that the effect of chopper operation on the overall losses and the efficiency of such a motor can be significant.
机译:当斩波控制电路操作时,使用二维有限元方法计算永磁直流电动机的电枢铁损。将同一台机器在相同操作条件下从纯直流电源供电时的损耗进行比较。对于这两种情况,都考虑了由于磁通密度恢复波形引起的较小的磁滞回线和涡流校正因子。数值工作是在1.2马力的永磁直流电机上与实验工作一起进行的,并将测试所揭示的励磁电流和电子力的影响与从数值模型计算的结果进行了比较,以验证所使用的参数在获取数值数据中。根据此处介绍的示例分析,由于斩波器操作,导致电机铁芯损耗增加了63%。这表明斩波器操作对这种电动机的总损耗和效率的影响可能很大。

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