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Enabling a linear model for the IMGC-02 absolute gravimeter

机译:为IMGC-02绝对重力仪启用线性模型

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摘要

Measurement procedures of most rise-and-fall absolute gravimeters have to resolve singularity at the apex of the trajectory caused by the discrete fringe counting in the Michelson-type interferometers. Traditionally the singularity is addressed by implementing non-linear models of the trajectory, but they introduce problems of their own, such as bias, non-uniqueness, and instability of the gravity estimates. Using the IMGC-02 gravimeter as an example, we show that the measurement procedure of the rise-and-fall gravimeters can be based on linear models which successfully resolve the singularity and provide rigorous estimates of the gravity value. The linear models also facilitate further enhancements of the instrument, such as accounting for new types of disturbances and active compensation for vibrations.
机译:大多数升降绝对重力仪的测量程序必须解决由迈克尔逊型干涉仪中离散条纹计数引起的轨迹顶点处的奇异性。传统上,奇异性是通过实现轨迹的非线性模型来解决的,但是它们会引入自身的问题,例如重力估计的偏差,非唯一性和不稳定性。以IMGC-02重力仪为例,我们表明,升降重力仪的测量过程可以基于线性模型,该模型可以成功解析奇异点并提供对重力值的严格估计。线性模型还有助于进一步增强仪器,例如考虑新型干扰和主动补偿振动。

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