用于分段反射镜试验台整形控制的精密传感器LabVIEW标定线性度可视化

A. Desai, J. Alvarenga, Harshit Tarsaria, K. Rad, H. Boussalis
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引用次数: 2

摘要

大型分段空间望远镜对其镜面形状的精度要求很高,以获得清晰的图像。为了使这种复杂结构的控制达到高精度和准确性,对涉及形状控制的传感设备进行不断检查,以确定其偏离所需的校准是很重要的。位于洛杉矶加州州立大学结构、推进和控制工程(Space)实验室的分段空间望远镜试验台,利用分段反射镜面板和42个传感器组成的网络,以高精度模拟单片抛物面反射镜的形状。对于这样的高精度系统,定期检查传感器校准对其性能至关重要。本文介绍了一个基于LabVIEW的可视化子系统,并将其应用于航天试验台的传感器标定。该子系统允许对每个传感器进行线性检查。此外,可视化子系统还提供了对系统进行实时监控的手段。可视化还减少了检查所有42个传感器的时间,同时提高了测量的精度和准确性。通过减少所需的时间,可以更容易地定期验证传感器的线性度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
LabVIEW calibration linearity visualization for precision sensors used in shaping control of a segmented reflector test bed
A large, segmented space telescope requires high precision and accuracy in its mirror shape to obtain clear images. In order for control of such complex structures to be achieved to high precision and accuracy, it is important for sensing equipment involved in shape control to be constantly checked for deviations from their required calibration. The Segmented Space Telescope Testbed at the Structures, Propulsion, and Control Engineering (SPACE) Laboratory at California State University, Los Angeles, utilizes segmented mirror panels and a network of 42 sensors to mimic a monolithic paraboloid mirror shape to high accuracy and precision. For such a high precision system, regular checking of sensor calibration is crucial to performance. This paper describes a LabVIEW — based visualization subsystem that has been implemented and used for sensor calibration of the SPACE Testbed. The subsystem allows for linearity check for each sensor. In addition, the visualization subsystem provides a real-time means of system monitoring. The visualization also reduces the time to check all 42 sensors while at the same time improve the precision and accuracy of the measurements. By reducing the time required, it is easier to verify sensor linearity at regular interval.
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