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Curved Trapezoidal Magnetic Flux Concentrator Design for Current Measurement of Multi-Core Power Cable With Magnetic Sensing

机译:弯曲梯形磁通量集中器设计,用于多芯电力电缆的磁感应电流测量

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Operating current of a multi-core power cable can be monitored by sensing the magnetic fields around the cable surface. Magnetic flux concentrators (MFCs) are typically installed to collect the magnetic flux lines and amplify the magnetic field signals for magnetic sensors that are sandwiched by pairs of MFCs. However, installing a series of conventional planar MFCs around the circular cable surface would form a polygonal structure, adversely aggregating the magnetic flux lines at the corners of the polygon. In this paper, a curved MFC structure was developed to overcome the problem. First, a simple curved structure (i.e., curved strip-shaped MFCs) was derived to accommodate magnetic sensors around the cable surface. Then, it was modified into the trapezoidal shape for further improving the amplification ratio after studying the influence of MFC thickness, aspect ratio, and end-to-end ratio. The saturation effect and frequency response of MFCs were also studied. The effectiveness of the curved trapezoidal MFCs compared to the strip-shaped ones was validated experimentally, in which the average amplification ratio of the trapezoidal MFCs (5.12) was substantially larger than that of the strip-shaped MFCs (1.46). The curved trapezoidal MFCs not only eliminate the magnetic field aggregation at the polygon corners but also fit compactly the round geometry of the cable compactly. More importantly, enhancing the magnetic field signals for the magnetic sensors can potentially improve the system ability to sense the weak magnetic field variations from slight current changes. The high-order harmonics can also be potentially restored because the curved trapezoidal MFCs have a good frequency response.
机译:多芯电力电缆的工作电流可以通过检测电缆表面周围的磁场进行监控。通常安装磁通量集中器(MFC),以收集磁通量线并放大由MFC对夹持的磁传感器的磁场信号。但是,在圆形电缆表面周围安装一系列常规的平面MFC将形成多边形结构,从而不利地在多边形的拐角处聚集磁通线。在本文中,开发了一种弯曲的MFC结构来解决该问题。首先,得到一种简单的弯曲结构(即弯曲的条形MFC),以在电缆表面周围容纳磁传感器。然后,在研究了MFC厚度,纵横比和端对端比的影响后,将其修改为梯形形状,以进一步提高放大率。还研究了MFC的饱和效应和频率响应。通过实验验证了弯曲梯形MFCs与条形MFCs的有效性,其中梯形MFCs的平均放大率(5.12)明显大于条形MFCs的平均放大率(1.46)。弯曲的梯形MFC不仅消除了多边形拐角处的磁场聚集,而且紧凑地适合电缆的圆形几何形状。更重要的是,增强用于磁传感器的磁场信号可以潜在地提高系统从微小电流变化中感测弱磁场变化的能力。由于弯曲的梯形MFC具有良好的频率响应,因此还可以潜在地恢复高次谐波。

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