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Reliability Testing Procedure for MEMS IMUs Applied to Vibrating Environments

机译:应用于振动环境的MEMS IMU的可靠性测试程序

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摘要

The diffusion of micro electro-mechanical systems (MEMS) technology applied to navigation systems is rapidly increasing, but currently, there is a lack of knowledge about the reliability of this typology of devices, representing a serious limitation to their use in aerospace vehicles and other fields with medium and high requirements. In this paper, a reliability testing procedure for inertial sensors and inertial measurement units (IMU) based on MEMS for applications in vibrating environments is presented. The sensing performances were evaluated in terms of signal accuracy, systematic errors, and accidental errors; the actual working conditions were simulated by means of an accelerated dynamic excitation. A commercial MEMS-based IMU was analyzed to validate the proposed procedure. The main weaknesses of the system have been localized by providing important information about the relationship between the reliability levels of the system and individual components.
机译:应用于导航系统的微机电系统(MEMS)技术的普及正在迅速增加,但是目前,缺乏有关这种类型设备可靠性的知识,这严重限制了它们在航空航天飞行器和其他设备中的使用中高要求的领域。本文提出了一种基于MEMS的惯性传感器和惯性测量单元(IMU)的可靠性测试程序,适用于振动环境。根据信号精度,系统误差和意外误差对传感性能进行了评估;通过加速动态激励模拟了实际工作条件。对基于MEMS的商用IMU进行了分析,以验证所提出的程序。通过提供有关系统可靠性水平与各个组件之间关系的重要信息,已定位了系统的主要弱点。

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