Reducing the Time Consumption of Vibration Correction Methods for Absolute Gravimeters

Meiying Guo, K. Wu, Jiamin Yao, Yi Wen, Zhenxing Li, Lijun Wang
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引用次数: 1

Abstract

Free-fall absolute gravimeters are widely employed to measure the gravitational acceleration, commonly known as g. It applies an interferometer to measure the trajectory of a free-falling object. The measurement precision of the absolute gravimeters is limited by the ground vibration. A vibration correction method is often applied in a noisy environment including a moving platform, sometimes it is required to get the g value quickly. It takes much time about 6 min to calculate the g value for one set measurement (no less than 25 drops). In order to quickly and accurately obtain the g value in hostile environments, there are two modifying methods including applying a lower sampling rate than original sampling rate of the vibration signal, and applying a division on trajectory data method. An equally spaced in distance division method is used. The results show, when applying the sampling rate of the vibration signal 1 MHz and the division factor 14, the total consumption time is reduced to one quarter of the time, from about 6 min to 1.5 min. Meanwhile, the error between the corrected results with and without the modifying methods is below 10 μGal, and the standard deviation of the g value has no significant change. In the future, promisingly it will be used to quick and precise dynamic absolute gravity measurement in hostile environments.
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减少绝对重力仪振动校正方法的时间消耗
自由落体绝对重力仪被广泛用于测量重力加速度,通常称为g。它采用干涉仪来测量自由落体物体的轨迹。地面振动限制了绝对重力仪的测量精度。振动校正方法经常应用于包括移动平台在内的噪声环境中,有时需要快速获得g值。计算一组测量(不少于25滴)的g值需要6分钟左右的时间。为了快速准确地获得恶劣环境下的g值,有两种修改方法,一种是对振动信号采用比原始采样率更低的采样率,另一种是对轨迹数据进行分割。采用等间距距离分割法。结果表明,当振动信号的采样率为1 MHz,分割系数为14时,总消耗时间从6 min左右减少到1.5 min,减少了1 / 4的时间,同时,修正后的结果与未修正的结果误差在10 μGal以下,g值的标准差没有显著变化。未来,它有望用于恶劣环境下快速精确的动态绝对重力测量。
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