Krobot Robert, Dadić Martin
DEIF A/S, Frisenborgvej 33, 7800 Skive, Denmark.
Faculty of Electrical Engineering and Computing, University of Zagreb, Unska 3, 10000 Zagreb, Croatia.
Sensors (Basel). 2025 Jun 18;25(12):3813. doi: 10.3390/s25123813.
Determination of single-valued BH curve and power loss curve of electric steels is an important parameter in the design of electrical machines and transformers. This paper proposes a correction procedure for the measurement of anhysteretic BH curve and power losses, based on the finite element model (FEM) and SST apparatus. A 3D finite element model (FEM) of the SST (Single Sheet Tester) was developed with respect to the IEC 60404-3 standard. The measurement results obtained with a standardized SST apparatus are fed to its FEM and used to iteratively correct initial BH and power loss curves, obtained using magnetic equivalent circuits theory. The proposed iterative correction procedure is based on the steepest descent algorithm, while the stopping criteria were based on the difference between simulated and measured global variables (power loss, induced voltage, and primary current). After correction, root mean squared errors were decreased from 1.85 A/m to 42.88 × 10 A/m for the BH curve, and from 44.5 × 10 W/kg to 7.28 × 10 W/kg for the power loss curve.
确定电工钢的单值BH曲线和功率损耗曲线是电机和变压器设计中的一个重要参数。本文基于有限元模型(FEM)和单片测试仪(SST)设备,提出了一种用于测量非磁滞BH曲线和功率损耗的校正程序。针对IEC 60404-3标准,开发了SST(单片测试仪)的三维有限元模型(FEM)。用标准化SST设备获得的测量结果被输入到其有限元模型中,并用于迭代校正使用磁等效电路理论获得的初始BH曲线和功率损耗曲线。所提出的迭代校正程序基于最速下降算法,而停止准则基于模拟和测量的全局变量(功率损耗、感应电压和一次电流)之间的差异。校正后,BH曲线的均方根误差从1.85 A/m降至42.88×10 A/m,功率损耗曲线的均方根误差从44.5×10 W/kg降至7.28×10 W/kg。