强振动环境下惯性传感器的数据处理

J. Rohac, M. Reinstein, K. Draxler
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引用次数: 11

摘要

对于商业公司、实验室和学术界的许多工程师来说,低成本惯性传感器的数据处理一直是而且仍然是一个大问题。惯性传感器是构成导航系统基础的测量单元。这些系统几乎无处不在;不管是制药、机器人、汽车工业、航空航天等行业。然而,总是需要指定系统应该在哪些条件下运行。本文研究了超轻型飞机ATEC 321在强振动环境下测量的惯性传感器数据的处理。如何处理这些数据以保证人工地平系统的可接受性能是一个巨大的挑战。由于该系统仅依赖于加速度和角速率感知,因此数据滤波的正确性和效率以及连续数据处理起着关键作用。给出了有关数据分析和不同方法比较的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Data processing of inertial sensors in strong-vibration environment
Data processing of low-cost inertial sensors has been and still is a big issue for many engineers in commercial companies, laboratories, and academia. Inertial sensors compose a measurement unit used as the basis of navigation systems. These systems can be found almost everywhere; it does not matter if it is in pharmaceutics, robotics, automotive industry, aerospace etc. However, there is always a need to specify under which conditions the systems are supposed to operate. This paper deals with the processing of inertial sensor data measured in an environment with strong vibrations on the ultra-light aircraft ATEC 321. It was a great challenge to process the data in such a way as to ensure the acceptable behavior of the artificial horizon system. Because the system should rely only on acceleration and angular rate sensing, the correctness and efficiency of data filtering as well as consecutive data processing play a key role. Results regarding data analyses and comparisons of different approaches are presented.
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