|
|
Development of Angle Calibration Device for Indoor GPS Transmitters |
Development of Angle Calibration Device for Indoor GPS Transmitters |
Changcheng Institute of Metrology and Measurement, Beijing 100095, China |
|
|
Abstract Indoor GPS (iGPS) is a newly developed laser based measuring system for large scale measurement. Since the synthesis uncertainties of the indoor GPS system provided by a triangulation network propagate from the uncertainties in the individual angular measurements, the first step in assessing the accuracy of the system is to determine the uncertainties of the horizontal angle and vertical angle. According to the indoor GPS measurement principle and the requirements of the indoor GPS angle calibration technology,combined with precision turntable, laser coaxial adjustment device and the vertical axis, the calibration device is developed. Measuring angle precision are calculated and analyzed. Experiments are then carried out to determine the actual uncertainty of the horizontal and vertical angle. Results show that horizontal angle measurement uncertainty is 1.5″, vertical angle measurement uncertainty is 0.9″, which satisfy the technical index.
|
|
|
|
|
[1] Muelaner J E, Wang Z, Jamshidi J, et al. iGPS-an initial assessment of technical and deployment capability [C]// ICMEN. Proceedings of the 3rd International Conference on Manufacturing Engineering. Greece, Chalkidiki. 2008,805-810.
[2] Muelaner J E, Wang Z, Jamshidi J, et al. Study of the uncertainty of angle measurement for a rotary-laser automatic theodolite (R-LAT) [J]. Journal of Engineering Manufacture, 2009,223 (3):217-229.
[3] 闫奇瑾.基于室内GPS的弹头形心轴线测量方法的研究[D]. 哈尔滨:哈尔滨工业大学,2007.
[4] Arc Second Inc. Error budget and specifications[Z]. 2002.
[5] 李倩,孙安斌,马骊群.角度校准中不规则旋转体同轴调整方法[J].计量学报,2012,33(5A):13-16.
[6] 李庆祥,王东生,李玉和.现代精密仪器设计[M].北京:清华大学出版社,2004.
[7] 康海东,范百兴,李宗春.iGPS测量原理及其精度分析[J].测绘通报,2012,(3):12-15. |
|
|
|