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A Novel Closed Loop Current Sensor Based on a Circular Array of Magnetic Field Sensors

机译:一种基于圆形磁场传感器阵列的新型闭环电流传感器

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During the last years, coreless current sensors based on circular arrays of magnetic field sensors have been investigated. These sensors were limited in bandwidth and accuracy by the magnetic field sensors used to realize the circular arrays. Thus, this paper applied the well-known "closed loop" principle to circular array-based current sensors to overcome these limitations. This paper gives a comparison between circular arrays built from Hall and Fluxgate magnetic field sensors in both the closed loop and open loop operation. If closed loop configuration Fluxgate sensors are used, instead of Hall sensors, the measurement error can be reduced by a factor of two due to their intrinsic characteristics. Moreover, it is shown that the closed loop operation of the circular arrays results in a significant reduction of the temperature drift of the sensitivity for Fluxgate and Hall sensor-based circular arrays. If Hall sensors are used for the circular array, the reduction of the temperature drift of the sensitivity achieved by closed loop operation is about a factor of 10. If Fluxgate sensors are used, a significant reduction of the nonlinearities like hysteresis and a substantial reduction of the temperature drift of the sensitivity was observed.
机译:在过去几年中,研究了基于磁场传感器圆形阵列的无核电流传感器。用于实现圆形阵列的磁场传感器,这些传感器的带宽和精度受到限制。因此,本文将众所周知的“闭环”原理应用于圆形阵列的电流传感器,以克服这些限制。本文在闭环和开环操作中,从霍尔和浮雕磁场传感器构建的圆形阵列之间进行了比较。如果使用闭环配置浮动传感器,而不是霍尔传感器,因此由于其固有的特性,测量误差可以减少两倍。此外,示出了圆形阵列的闭环操作导致浮雕的灵敏度的温度漂移显着降低了基于孔传感器的圆形阵列。如果霍尔传感器用于圆形阵列,则闭环操作所实现的灵敏度的温度漂移的减少约为10系数。如果使用圆锥形传感器,则磁磁等非线性的显着降低和大幅减少观察到灵敏度的温度漂移。

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