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Self-calibration method of vacuum level measuring sensors in vacuum switching

机译:真空开关中真空度测量传感器的自校准方法

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In same coordinate system with discharge current as x-axis and vacuum level as y-axis, calibration curves of different vacuum interrupters are similar in shapes; therefore, a calibration curve for an idiographic vacuum interrupter can be obtained by shifting the general calibration curve along x-axis. Because the vacuum level measured by the manufacturer is the most accurate, its level is set as the base value. Then an increment of shift should be found: it is the x-axis difference value between the general calibration curve and the value measured when this vacuum interrupter leaves factory. After which, an idiographic calibration curve can be obtained by shifting the general calibration curve on x-axis by the increment. Thus, a self-calibration method is realized, which leads to an improvement of measurement accuracy. In this paper, the shifting of curves is realized by two kinds of methods: direct increment and curve fitting. This self-calibration method can be applied to various vacuum level measuring systems of vacuum interrupters.
机译:在相同的坐标系下,放电电流为x轴,真空度为y轴,不同的真空灭弧室的校准曲线形状相似。因此,可以通过沿x轴移动常规校准曲线来获得专用真空灭弧室的校准曲线。由于制造商测量的真空度是最准确的,因此将其水平设置为基准值。然后应找到偏移量的增量:它是一般校准曲线与该真空灭弧室出厂时测得的值之间的x轴差值。之后,可以通过将x轴上的常规校准曲线移动增量来获得独特的校准曲线。因此,实现了自校准方法,这导致测量精度的提高。在本文中,曲线的移动是通过两种方法实现的:直接增量和曲线拟合。这种自校准方法可以应用于真空灭弧室的各种真空度测量系统。

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