利用参考物体测量纳米卫星质量定心和惯性特性的装置误差评定程序

P. V. Vasin, E. Barinova
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引用次数: 0

摘要

本文解决了萨马拉大学研制的基于倒立扭摆原理的纳米卫星质量定心和惯性特性测量装置精度的实验测定问题。提出了一种利用参考物体确定惯性张量分量和质心坐标测量误差的方法。为此,以CubeSat 3U纳米卫星的形式开发和生产了一个可变配置的参考复合对象。在此标准的帮助下,开发了一种改进的实验方法,通过平均均匀量,可以减少设备制造及其工具中误差对测量精度的影响。本文介绍了一系列实验的结果,确定了测量三种变体组合的参考组合物体的质量定心和惯性特性的误差。这一系列的实验证实了理论上计算的测量误差,并在设备的技术文件中说明。此外,对安装在设备上的电子光学传感器的精度进行了评估,发现环境因素对其运行的影响不显著,可以忽略不计。研究结果可用于确定CubeSat 1U-3U纳米卫星在发射前测试阶段的质心坐标和惯性张量分量测量误差。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Procedure of assessing the error of the device for measuring mass-centering and inertial characteristics of nanosatellites using reference objects
In this paper, we solve the problem of experimental determination of the accuracy of a device for measuring mass-centering and inertial characteristics of nanosatellites which was developed at Samara University and based on the principle of inverted torsional pendulum. A procedure for determining the measurement error of the inertia tensor components and the center-of-mass coordinates using reference objects is proposed. For this purpose, a reference composite object of variable configuration was developed and produced in the form of a CubeSat 3U nanosatellite. With the help of this standard, a modified method of conducting an experiment was developed, which allows reducing the influence of errors in the manufacture of the device and its tooling on the measurement accuracy by averaging the homogeneous quantities. The article presents the results of a series of experiments to determine the errors in measuring mass-centering and inertial characteristics of a reference composite object of three variants of assembly. This series of experiments confirmed the measurement error theoretically calculated and stated in the technical documentation for the device. In addition, the accuracy of the electronic optical sensor installed on the device was evaluated and it was found that the influence of environmental factors on its operation is insignificant and can be neglected. The results of this work can be used to determine the error of measuring the center-of-mass coordinates and the inertia tensor components of a CubeSat 1U-3U nanosatellite at the pre-launch testing stage.
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