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Atom-interferometric, stepped gravity gradient measuring system

机译:原子干涉,阶梯式重力梯度测量系统

摘要

A full-tensor, gravity gradient measuring system is disclosed that is based on atom interferometry. Each axis in the three-axis measuring system is served by a different gravity gradiometer, where each gradiometer comprises three pairs of atom interferometric (AI) accelerometers. The accelerometers in each pair are mounted on opposite sides of the gradiometer's rotation axis from each other. The three AI accelerometer pairs are step-rotated, instead of being continuously rotated, thereby providing enhanced signal-to-noise performance. The three gradiometers in the overall measuring system are mounted orthogonally with respect to one another on a local-level platform, in order to achieve a full-tensor measuring system. The measuring system can be step-rotated as an overall unit around an axis perpendicular to a local level reference. The multiple levels of stepped rotation, as enabled by the atom interferometry being utilized, yields improved results with lower costs than what is achievable with some prior-art techniques.
机译:公开了基于原子干涉法的全张量重力梯度测量系统。三轴测量系统中的每个轴都由不同的重力梯度仪提供服务,其中每个梯度仪都包括三对原子干涉(AI)加速度计。每对加速度计都安装在梯度计旋转轴的相对两侧。三个AI加速度计对是步进旋转的,而不是连续旋转的,从而提供增强的信噪比性能。整个测量系统中的三个梯度仪相对于彼此正交安装在本地平台上,以实现全张量测量系统。该测量系统可以作为一个整体单元绕垂直于本地基准的轴逐步旋转。与利用某些现有技术所能达到的相比,通过利用原子干涉测量法所实现的多级步进旋转能够以更低的成本获得更好的结果。

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