激光跟踪仪在大型双反射面天线形面在线调整中的应用
Application of Laser Tracker to Online Adjustment of Structural Deformation for Large Dual-Reflector Antenna
查看参考文献22篇
文摘
|
大型高精度双反射面天线的结构变形严重恶化其电性能,工程中开展天线形面测量与调整工作极为重要。针对目前工程中实现大型天线形面在线调整难的问题,探讨了一种利用激光跟踪仪从天线副面测量主面形面的调整方案。将激光跟踪仪安装在副面的背面,且激光探头可沿着副面背面的边沿导轨移动,则利用激光跟踪仪靶标自动搜索功能,实现从副面测量主面形面而不影响天线正常工作。基于上述测量方案,从最佳拟合反射面的概念出发,推导了双反射面天线副面的位姿调整量和主面的促动器调整量。相比传统方法,该方案能够实现在线自动测量,且因测量系统依附于副面,故无需测量副面的刚体位移即可同时得到主面和副面最佳匹配时各自的调整量。针对某35 m双反射面天线仿真分析了该方案的调整效果,结果表明,仅调整副面时的形面误差范围由±3.5 mm减小到±1 mm,同时调整主副面时的形面误差近似为零,不过在工程应用时还需要考虑测量系统测量精度的影响。该方案可有效改善反射面天线的形面精度和电性能,可为工程中大型高精度双反射面天线形面的闭环调整提供参考。 |
其他语种文摘
|
Objectives:Structural deformation of dual-reflector antenna with large aperture and high surface precision will greatly decrease its electrical performance,and performing surface measurement and adjustment is of great importance.For the problem of online adjustment of structural deformation in engineering,one online adjustment method is presented based on a laser tracker measuring system.Methods:Assumed that a laser tracker is installed on the back frame of sub-reflector and laser probe can move along the guideway on the edge of sub-reflector,with its ability of automatic target search,it will be possible to realize automatic measurement during antenna operation.Based on the above measuring strategy,we derive the pose adjustments of sub-reflector and the panel adjustments of main reflector based on the concept of best-fit reflector using the measured surface information of main reflector.The proposed method can achieve the online measurement,and because the measuring system is fixed on the sub-reflector,there is no need to measure the position and attitude of the sub-reflector again.Results:For a 35 m reflector antenna,the adjustment precision is discussed,and simulation results show that the surface error is reduced to ±1 mm from ±3.5 mm when only the sub-reflector is adjusted and the surface error is nearly zero when the sub-reflector and main reflector are both adjusted.It should be noted that the measurement accuracy of the whole measuring system should be further considered in engineering.Conclusions:The proposed method can greatly improve reflector's surface accuracy and electromagnetic performance,and it can provide helpful guidance for automation closed-loop surface adjustment of large dual-reflector antenna. |
来源
|
武汉大学学报. 信息科学版
,2022,47(3):396-404 【核心库】
|
DOI
|
10.13203/j.whugis20200073
|
关键词
|
反射面天线
;
变形检测
;
形面调整
;
远场方向图
;
激光跟踪仪
|
地址
|
1.
中国科学院新疆天文台, 新疆, 乌鲁木齐, 830011
2.
中国科学院射电天文重点实验室, 中国科学院射电天文重点实验室, 新疆, 乌鲁木齐, 830011
3.
西安电子科技大学机电工程学院, 陕西, 西安, 710071
|
语种
|
中文 |
文献类型
|
研究性论文 |
ISSN
|
1671-8860 |
学科
|
测绘学 |
基金
|
新疆维吾尔自治区天山雪松计划
;
国家自然科学基金
;
国家重点研发计划
;
中国科学院青年创新促进会项目
;
中国科学院天文台站设备更新及重大仪器设备运行专项经费
|
文献收藏号
|
CSCD:7176513
|
参考文献 共
22
共2页
|
1.
李金岭. 关于我国天测与测地VLBI网络未来建设的讨论.
武汉大学学报·信息科学版,2010,35(6):670-673
|
CSCD被引
15
次
|
|
|
|
2.
Ukita N. Thermal and Wind Effects on the Azimuth Axis Tilt of the ASTE 10-m Antenna.
Publications of the National Astronomical Observatory of Japan,2007,10:25-33
|
CSCD被引
3
次
|
|
|
|
3.
Greve A. The Beam Pattern of Reflector Antennas with Buckled Panels.
IEEE Transactions on Antennas and Propagation,2010,58(3):959-962
|
CSCD被引
3
次
|
|
|
|
4.
Zhang J. A Compensator for Large Antennas Based on Pointing Error Estimation Under a Wind Load.
IEEE Transactions on Control Systems Technology,2017,25(5):1912-1920
|
CSCD被引
5
次
|
|
|
|
5.
钱宏亮. 上海65m射电望远镜太阳辐射作用分析.
工程力学,2012,29(10):378-384
|
CSCD被引
11
次
|
|
|
|
6.
李金岭. 佘山13 m口径射电望远镜指向扫描数据解析.
武汉大学学报·信息科学版,2020,45(2):159-166
|
CSCD被引
2
次
|
|
|
|
7.
Duan B Y. Reflector Antenna Distortion Analysis Using MEFCM.
IEEE Transactions on Antennas and Propagation,2009,57(10):3409-3413
|
CSCD被引
28
次
|
|
|
|
8.
Rocca P. Interval Arithmetic for Pattern Tolerance Analysis of Parabolic Reflectors.
IEEE Transactions on Antennas and Propagation,2014,62(10):4952-4960
|
CSCD被引
9
次
|
|
|
|
9.
Lian P Y. Effects of Nonuniform Surface Errors along the Radius on Reflector's Radiation Characteristic and Its Quality Evaluation.
IEEE Transactions on Antennas and Propagation,2015,63(5):2312-2316
|
CSCD被引
5
次
|
|
|
|
10.
王从思. 大型射电望远镜天线主动面补偿研究进展.
中国科学:物理学力学天文学,2017,47(5):19-34
|
CSCD被引
5
次
|
|
|
|
11.
马增祥. 基于刚体位移的天线反射面拟合新算法.
机械工程学报,2010,46(18):29-35
|
CSCD被引
15
次
|
|
|
|
12.
Ryohei K. New 50-m-Class Single Dish Telescope:Large Sub-millimeter Telescope (LST).
Astrophysics,2017(1):301-312
|
CSCD被引
1
次
|
|
|
|
13.
Feng S F. Design of Tipping Structure for 110 m High-Precision Radio Telescope.
Acta Astronautica,2017,141:50-56
|
CSCD被引
4
次
|
|
|
|
14.
Lian P Y. A Pattern Approximation Method for Distorted Reflector Antennas Using Piecewise Linear Fitting of the Exponential Error Term.
IEEE Transations on Antennas Propag,2015,63(10):4546-4551
|
CSCD被引
9
次
|
|
|
|
15.
Dong J. Correcting Gravitational Deformation at the Tianma Radio Telescope.
IEEE Transactions on Antennas and Propagation,2018,66(4):2044-2048
|
CSCD被引
10
次
|
|
|
|
16.
王伟.
机械结构因素对反射面天线电性能的影响机理及其应用,2011
|
CSCD被引
1
次
|
|
|
|
17.
王从思. 基于角度传感器的大口径射电望远镜面板实时位置计算方法.
中国科学:物理学力学天文学,2019,49(9):50-59
|
CSCD被引
1
次
|
|
|
|
18.
Nikolic B. Measurement of Antenna Surfaces From In-and Out-of-Focus Beam Maps Using Astronomical Sources.
Astron Astrophys,2007,465:679-683
|
CSCD被引
12
次
|
|
|
|
19.
Rahmat-Samii Y. Surface Diagnosis of Large Reflector Antennas Using Microwave Holographic Metrology: An Iterative Approach.
Radio Science,1984,19(5):1205-1217
|
CSCD被引
8
次
|
|
|
|
20.
丁辰.
FAST反射面节点测量数据处理方法研究,2017
|
CSCD被引
1
次
|
|
|
|
|