基于空间距离约束的姿态角现场精度评定方法
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TH741

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2019国家重点研发计划“制造基础技术与关键部件”重点专项(2019YFB2006100)2019国家重点研发计划(2019YFB2006100)项目资助


Attitude angle field accuracy evaluation method based on space distance constraints
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    摘要:

    针对大型精密工程现场姿态测量精度评定的需求,提出了一种利用长度计量基准溯源姿态测量结果的姿态角现场精度 评定方法。 首先,介绍了激光跟踪姿态测量系统的基本组成及测量原理;其次,基于六自由度并联机构的正向运动学研究,建立 了空间距离与靶标姿态之间的数学模型,并通过蒙特卡洛法仿真分析距离约束测量精度、控制场布局以及系统工作距离等因素 对评定模型精度的影响;最后,搭建实验平台,利用精密转台的相对转动量作为角度基准,对本文研究方法的可行性进行了验 证。 结果表明:当距离约束测量精度为 0. 038 mm,控制场大小为 1 400 mm×1 400 mm 时,在-20° ~ 20°的姿态角变化范围内,评 定模型方位角精度为 0. 055°,俯仰角精度为 0. 058°。 本文研究方法避免了基于角度基准评定方法中较为严格的坐标系配准要 求,能综合反映测量系统现场使用状态,可为六自由度激光跟踪测量系统中姿态角现场精度评定方法提供参考。

    Abstract:

    To meet the requirements of field attitude measurement accuracy evaluation of large-scale precision engineering, a method of attitude angle field accuracy evaluation is proposed by tracing the measurement results of attitude angle to the length measuring standards. Firstly, the basic composition and measurement principle of the laser tracking attitude measurement system are introduced. Secondly, the mathematical model between space distance and target attitude is formulated, which is based on the forward kinematics research of six-degree-of-freedom (6-DOF) parallel mechanism. The Monte Carlo method is used to simulate and analyze the effect of distance constraint measurement accuracy, control field layout and the working distance of the system on the evaluation model accuracy. Finally, an experimental platform is established, and the relative rotation of the precision turntable is used as the angle benchmark to evaluate the feasibility of the research method. Results show that the azimuth accuracy of the model is 0. 055 ° and the pitch accuracy is 0. 058 ° within the angle range of - 20° ~ 20°, when the distance constraint measurement accuracy is 0. 038 mm and the size of the control field is 1 400 mm×1 400 mm. In conclusion, the research method in this article avoids the strict requirements of the coordinate system registration in the evaluation method based on angle benchmark. It could comprehensively reflect the field use state of the measurement system, which can provide a reference for the attitude angle field accuracy evaluation method in the 6-DOF laser tracking measurement system.

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刘宁桐,熊 芝,何 静,翟中生,周维虎.基于空间距离约束的姿态角现场精度评定方法[J].仪器仪表学报,2022,43(9):72-80

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  • 在线发布日期: 2023-02-06
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