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Low Magnitude Direct Current Sensor Characteristics Improvement

机译:低幅值直流传感器特性改进

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The paper describes fluxgate leakage current sensor characteristics improvement techniques, which can be useful to obtain optimal bandwidth and sensitivity. For direct current leakage current sensor, the sensitivity and bandwidth are the most important because high sensitivity allows for higher insulation resistance measurement and working with lower line voltages while a high bandwidth provides for the safe line disconnection time on failure. In fluxgate current sensors design, there is a tradeoff between bandwidth and sensitivity, which makes it difficult to produce a DC line protection device with high sensitivity and bandwidth. At the same time in the area of space magnetometers, there are significant achievements in the magnetometers' characteristics improvement, including sensitivity and bandwidth. Fluxgate current sensors have a similar structure and operating principles with fluxgate magnetometers, therefore some of the techniques can be adopted. In this paper, the authors discuss fluxgate current sensor characteristics improvement methods and suggest a sensor schematic with enhanced bandwidth and response time. The developed circuit model of fluxgate current sensor simplifies early steps of sensor development providing a sufficient estimate of sensor oscillation frequency and gain. To confirm modeling results, a prototype of the proposed sensor was developed.
机译:本文介绍了磁通门泄漏电流传感器特性改进技术,该技术可用于获得最佳带宽和灵敏度。对于直流泄漏电流传感器,灵敏度和带宽是最重要的,因为高灵敏度可以实现更高的绝缘电阻测量并以更低的线路电压工作,而高带宽则可以确保出现故障时安全的线路断开时间。在磁通门电流传感器设计中,带宽和灵敏度之间需要权衡,这使得很难生产出具有高灵敏度和带宽的直流线路保护设备。同时,在空间磁力计领域,磁力计的特性改进(包括灵敏度和带宽)取得了显著成就。磁通门电流传感器的结构和工作原理与磁通门磁力计相似,因此可以采用某些技术。在本文中,作者讨论了磁通门电流传感器特性的改进方法,并提出了具有增强的带宽和响应时间的传感器原理图。磁通门电流传感器的已开发电路模型简化了传感器开发的早期步骤,从而提供了对传感器振荡频率和增益的充分估计。为了确认建模结果,开发了拟议传感器的原型。

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