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HIGH-PRECISION MAGNETIC SUSPENSION ACCELEROMETER

机译:高精度磁悬浮加速度计

摘要

A high-precision magnetic suspension accelerometer for measuring the linear acceleration of a spacecraft is provided, comprising a magnetically shielded vacuum chamber system, a magnetic displacement sensing system, a magnetic suspension control system and a small magnetic proof mass. A optical coherence displacement detection technique is utilized for precisely measuring the position and the posture of the small magnetic proof mass in real time, and a magnetic suspension control technique is utilized for precisely controlling the position and the posture of the small magnetic proof mass to be brought back to the origin, so as to keep the small magnetic proof mass in the center of the systemic inner chamber. When the spacecraft is subject to a non-conservative force, the magnitude and direction of the acceleration can be precisely measured via the measurement of currents in the position control coils due to the acceleration of the spacecraft proportional to the currents of the position control coils. The accelerometer of the invention can avoid the technical bottleneck of high-precision machining, is easy to be produced and can achieve more high-precision measurement of the acceleration vector.
机译:提供了一种用于测量航天器的线性加速度的高精度磁悬浮加速度计,其包括磁屏蔽真空室系统,磁位移感测系统,磁悬浮控制系统和较小的磁检测质量。光学相干位移检测技术用于实时精确地测量小磁检测质量块的位置和姿势,磁悬浮控制技术用于精确地控制小磁检测质量块的位置和姿势为带回原点,以便将小的磁检测质量保持在系统内腔的中心。当航天器受到非保守力时,由于航天器的加速度与位置控制线圈的电流成比例,因此可以通过位置控制线圈中电流的测量来精确测量加速度的大小和方向。本发明的加速度计可以避免高精度加工的技术瓶颈,易于制造,并且可以实现对加速度矢量的更高精度的测量。

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