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Compensation of the offset in numerical integration of a D-dot sensor measurement

机译:D点传感器测量的数值积分中的偏移补偿

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Based on the physical principle of D-dot electric field sensors, integration is indispensable to recover the measured electric field. As integrators are not applicable under certain conditions and the offset in numerical integration is vital to the pulse measurement results, it is necessary to compensate the offset in software integration of a D-dot electric sensor measurement. This paper presented a fast and adaptive method to solve this issue. In order to pick up the offset, a delayed trigger is adopted. And the detection is conducted on the integrated waveform instead of the measured raw data. By linear fitting approach, the offset is mathematically modeled and then removed from the original shape. A detailed example is given to illustrate the data process. From the corrected result it can be seen that the presented method is highly beneficial to accurate pulse measurements.
机译:基于D点电场传感器的物理原理,积分对于恢复测得的电场必不可少。由于积分器在某些条件下不适用,并且数值积分的偏移量对脉冲测量结果至关重要,因此有必要补偿D点电子传感器测量的软件积分中的偏移量。本文提出了一种快速且自适应的方法来解决此问题。为了获得偏移量,采用了延迟触发。然后,对积分波形进行检测,而不是对测量的原始数据进行检测。通过线性拟合方法,可以对偏移量进行数学建模,然后从原始形状中删除。给出了一个详细的示例来说明数据处理。从校正的结果可以看出,所提出的方法对于精确的脉冲测量非常有益。

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