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Analysis of Eddy-Current Losses in Solid Iron Under dc-Biased Magnetization Considering Minor Hysteresis Loops

机译:考虑小磁滞回线的直流偏置磁化下实心铁的涡流损耗分析

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In designing solid-pole synchronous machines, it is important to take into account the surface eddy-current losses in the field pole cores. In this study, a solid-iron ring specimen is adopted as an approximate model of solid-pole surfaces in order to conduct a fundamental study of the surface losses. The influence of the minor hysteresis loops on the losses under dc-biased magnetization is investigated. The losses in the ring under dc-biased magnetization are measured and analyzed by finite element analysis (FEA). The losses computed by the FEA considering minor loops are nearly the same as those measured. In contrast, the eddy-current losses computed by FEA without considering minor loops are considerably inaccurate because the incremental permeability is overestimated and the skin depth is underestimated. It is important to consider hysteresis for the accurate calculation of the surface eddy-current losses under dc-biased magnetization.
机译:在设计实磁极同步电机时,重要的是要考虑到励磁磁极铁心中的表面涡流损耗。在这项研究中,采用实心铁环试样作为实心磁极表面的近似模型,以便对表面损耗进行基础研究。研究了小磁滞回线对直流偏置磁化强度下损耗的影响。通过有限元分析(FEA)测量和分析直流偏置磁化强度下环中的损耗。 FEA在考虑较小环路的情况下计算出的损耗与测得的损耗几乎相同。相比之下,FEA计算的涡流损耗却没有考虑次要环路,这是非常不准确的,因为增量渗透率被高估了,集肤深度被低估了。为了准确计算直流偏置磁化强度下的表面涡流损耗,考虑磁滞非常重要。

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