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基于旋转调制技术的微机电系统捷联惯性姿态测量系统。

MEMS strapdown inertial attitude measurement system using rotational modulation technology.

机构信息

School of Geomatics, Liaoning Technical University, Fuxin, China.

出版信息

PLoS One. 2024 Feb 13;19(2):e0298168. doi: 10.1371/journal.pone.0298168. eCollection 2024.

Abstract

Attitude determination involves the integration of methodologies and systems for estimating the time varying attitude of moving objects. Strapdown Inertial Attitude Measurement System (SIAMS) is among the most widely used navigation systems. The development of cost effective Micro Electro Mechanic System (MEMS) based inertial sensors has made attitude measurement system more affordable. However, MEMS sensors suffer from various errors that have to be calibrated and compensated to get acceptable attitude results. Given the auto-compensation of inertial sensor bias in rotation error modulation, the objective of this paper is to develop a MEMS-based rotary SIAMS, in which the significant sensor bias is automatically compensated by rotating the IMU, to offer comparable performance with respect to a tactical-grade Inertial Measurement Unit (IMU). With the analysis of the relationship between the MEMS error and misalignment, a MEMS calibration model is derived, and a combined calibration method of multi position rotation is applied to estimate the deterministic sensor errors such as bias, scale factor, and misalignment. Simulation and experiment results indicate that the proposed method can further modulate and compensate the MEMS errors, thereby improving the MEMS attitude accuracy.

摘要

姿态确定涉及用于估计移动物体随时间变化的姿态的方法和系统的集成。捷联惯性姿态测量系统(SIAMS)是最广泛使用的导航系统之一。基于成本效益的微机电系统(MEMS)惯性传感器的发展使得姿态测量系统更加经济实惠。然而,MEMS 传感器会受到各种误差的影响,这些误差必须进行校准和补偿才能获得可接受的姿态结果。鉴于惯性传感器偏置在旋转误差调制中的自动补偿,本文的目的是开发一种基于 MEMS 的旋转 SIAMS,其中通过旋转 IMU 自动补偿重要的传感器偏置,以提供与战术级惯性测量单元(IMU)相当的性能。通过分析 MEMS 误差和失准之间的关系,推导出了一个 MEMS 校准模型,并应用多位置旋转的组合校准方法来估计偏置、标度因数和失准等确定性传感器误差。仿真和实验结果表明,所提出的方法可以进一步调制和补偿 MEMS 误差,从而提高 MEMS 姿态精度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/06c2/10863888/d9d3ea5bc643/pone.0298168.g001.jpg

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