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A Tangential Induction Sensor for 3-D Analyses of Peripheral Flux Distributions in Transformer Cores

机译:切线感应传感器,用于3-D分析变压器铁芯的外围通量分布

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This paper concerns the detection of local magnetic induction in peripheral regions of transformer cores. Induction distributions are important for the interpretation of local losses and magnetostriction. Most authors use advanced numerical modeling-like FEM for the computation of local induction values. However, effective estimations tend to be impossible due to non-linearity, extreme anisotropy, and complex effects of hysteresis. As an alternative to FEM, the conventional method for local measurements is to use arrays of single-turn search coils. However, this method is laborious, and it affects the measured values in strong ways due to the thickness of the arranged wires and artifacts from the drilled holes. This paper presents a novel approach for peripheral core regions based on measurements with a tangential induction coil, i.e., a field coil with a ferromagnetic core. The sensor was tested on a model transformer core stacked from three packages of different widths of grain-oriented electrical steel, for the nominal induction of 1.7 T. As an advantageous effect, the sensor does not cause any interlaminar air gaps and detects the amplitude of the induction not only in planar, but also in lateral positions. Results from measuring positions are presented. They show that the induction distribution is inhomogeneous with variations up to %. High induction values were measured in the widest main package of the core, in contrast to much lower ones in the outer packages. On the other hand, the corners, yokes, and T-joints show much more uniformly flux distribution. The findings of this paper can be assumed to be relevant for industry in order to optimize the construction of cores for the purpose of their uniform utilization.
机译:本文涉及在变压器铁芯外围区域的局部磁感应的检测。感应分布对于解释局部损耗和磁致伸缩非常重要。大多数作者使用类似高级数值模型的FEM来计算局部感应值。但是,由于非线性,极端的各向异性以及磁滞的复杂影响,有效的估计往往是不可能的。作为有限元分析的替代方法,用于局部测量的常规方法是使用单匝搜索线圈阵列。但是,这种方法很费力,并且由于所布置的导线的粗细和钻孔中的工件,它会强烈影响测量值。本文基于切向感应线圈(即具有铁磁芯的励磁线圈)的测量结果,提出了一种用于外围磁芯区域的新颖方法。该传感器在模型变压器铁芯上进行了测试,该变压器铁芯由三个不同宽度的取向钢的包装堆叠而成,标称感应强度为1.7T。作为一个有益的效果,该传感器不会引起任何层间气隙,并且可以检测出传感器的振幅。感应不仅在平面上,而且在横向位置上。给出了测量位置的结果。他们表明感应分布不均匀,变化高达%。在磁芯最宽的主包装中测得的高感应值,而在外包装中则低得多。另一方面,拐角,轭和T型接头的通量分布要均匀得多。可以认为本文的研究结果与工业相关,以优化磁芯的构造以达到统一利用的目的。

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