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Design of a Low-Consumption Fluxgate Transducer for High-Current Measurement Applications

机译:用于大电流测量应用的低功耗磁通门传感器的设计

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This paper presents the design and final realization of a transducer system for the measurement of high dc and ac currents. This transducer is based on the magnetic flux compensation technique, also called fluxgate principle. The transducer designed can measure currents of around 1 kA of peak value with a 170-kHz small-signal bandwidth. This functionality can be achieved with low power consumption if the designed system is compared with other fluxgate transducers available on the market and with similar functional specifications. Improvement in consumption was achieved by the inclusion in the design of a switching power supply (based on flyback topology) and a switched amplifier for generating magnetic flux compensation current (based on half-bridge inverter topology).
机译:本文介绍了用于测量高直流和交流电流的换能器系统的设计和最终实现。该传感器基于磁通量补偿技术,也称为磁通门原理。设计的传感器可以在170kHz小信号带宽下测量约1kA峰值电流。如果将设计的系统与市场上可用的其他磁通门换能器进行比较,并且具有类似的功能规格,则可以以低功耗实现此功能。通过在开关电源(基于反激式拓扑)和用于产生磁通量补偿电流的开关放大器(基于半桥逆变器拓扑)的设计中实现功耗的改善。

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