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Pin Sensor for Interior Induction Measurements in Transformer Cores

机译:用于变压器铁心内部电感测量的引脚传感器

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This paper concerns, the problem to assess 3-D distributions of magnetic induction in soft magnetic systems like machine cores of transformers or generators. Within bulk material, estimations of distributions are restricted to numerical methods like FEM, the application of sensors being hard. On the other hand, in laminated material, the conventional method is to use single-turn search coil sensors arranged in holes through the laminations. As drawbacks, the method is extremely laborious, and it causes artifacts due to the formation of interlaminar air gaps. This paper presents a completely novel alternative that is applicable in systems of both laminated and bulk material. Instead of single holes, measurement channels (e.g., 3 mm width) are established through the whole system. A soft magnetic pin (e.g., 2.5 mm diameter) with pickup coil is used as an calibrated dummy sensor. It determines an induction profile along the channel in a fully automatic way. The effectiveness is demonstrated for the case of a 3-phase transformer core. Induction profiles through a core-limb of three packages of different width are presented in correlation with corresponding loss profiles, as detected in an analogous way.
机译:本文涉及评估软磁系统(如变压器或发电机的机芯)中磁感应强度的3-D分布的问题。在散装材料中,分布的估计仅限于FEM之类的数值方法,传感器的应用非常困难。另一方面,在层压材料中,常规方法是使用布置在穿过层压件的孔中的单匝搜索线圈传感器。作为缺点,该方法非常费力,并且由于形成层间气隙而导致伪影。本文提出了一种完全新颖的替代方案,可用于层压和散装材料的系统。在整个系统中建立了测量通道(例如3 mm宽),而不是单个孔。带有拾波线圈的软磁针(例如,直径为2.5 mm)用作校准的虚拟传感器。它以全自动方式确定沿通道的感应曲线。在三相变压器铁芯的情况下证明了其有效性。通过以不同方式检测到的与相应损耗曲线相关的不同宽度的三个封装的铁芯臂的感应曲线被呈现出来。

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