测绘通报 ›› 2019, Vol. 0 ›› Issue (2): 12-16,44.doi: 10.13474/j.cnki.11-2246.2019.0035
Previous Articles Next Articles
YE Kai1, ZHANG Chao1, SHI Chunlin1,2, MI Kefeng1,3, ZHAN Yinhu1
Received:
2018-05-31
Revised:
2018-07-29
Online:
2019-02-25
Published:
2019-03-05
CLC Number:
YE Kai, ZHANG Chao, SHI Chunlin, MI Kefeng, ZHAN Yinhu. Application of star recognition algorithm based on video measuring robot in automatic astronomical orientation[J]. 测绘通报, 2019, 0(2): 12-16,44.
[1] 张超, 郑勇, 李长会. 用任意星进行天文定向的研究[J]. 测绘科学, 2005, 30(4):30-32. [2] 詹银虎, 郑勇, 张超,等. 一种亮星识别算法及其在天文定向中的应用[J]. 测绘学报, 2015, 44(3):257-263. [3] 石志伟. 基于B1000的星敏感器星图预处理及识别算法[D]. 武汉:华中科技大学, 2016. [4] 张磊, 何昕, 魏仲慧,等. 三角形星图识别算法的改进[J]. 光学精密工程, 2010, 18(2):458-463. [5] 张磊, 何昕, 魏仲慧,等. 基于星图识别的空间目标快速天文定位[J]. 光学精密工程, 2014, 22(11):3074-3080. [6] 李辉, 王安国, 张磊. 改进金字塔算法用于小视场星图识别[J]. 应用光学, 2013, 34(2):267-272. [7] 李立宏, 林涛, 宁永臣,等. 一种改进的全天自主三角形星图识别算法[J]. 光学技术, 2000, 26(4):372-374. [8] QUINE B M, WHYTE H F. A fast autonomous star-acquisition algorithm for spacecraft[J]. Control Engineering Practice, 1996, 4(12):1735-1740. [9] PADGETT C, DELGADO K. A grid algorithm for autonomous star identification[J]. IEEE Transactions on Aerospace & Electronic Systems, 1996, 33(1):202-213. [10] 王海涌, 费峥红, 张超. 改进的基于主星的星图识别算法[J]. 光学精密工程, 2009, 17(1):220-224. [11] 宋飞杰, 张超, 王若璞,等. Leica-TS30在天文测量中的应用[J]. 测绘科学技术学报, 2015, 32(2):135-139. [12] 宋飞杰. 天文测量人仪差室内标定技术研究[D]. 郑州:信息工程大学, 2015. [13] 国家测绘局.大地天文测量规范:GB/T 17943-2000[S]. 北京:中国标准出版社,2000. [14] 陈勤勤, 刘新江. 天文经度测量中人仪差改正精度分析[C]//中国测绘地理信息学会2014年学术年会. 武汉:[s.n.], 2014. [15] 董朝阳, 唐宇培, 刘新江. 天文经度测量中人仪差测定精度评估方法研究[J]. 海洋测绘, 2015, 35(5):47-50. [16] 张捍卫, 郑勇, 马高峰. VLBI中性大气折射延迟的研究进展——天顶延迟的改正模型[J]. 测绘科学, 2003, 28(2):53-57. [17] 冒蔚, 张捍卫, 李彬华,等. 测定天文大气折射和建立折射延迟实测模型的必要性[J]. 天文研究与技术:国家天文台台刊, 2005, 2(4):232-239. [18] 曹冲. 北斗与GNSS系统概论[M]. 北京:电子工业出版社, 2016. [19] 熊能. GNSS高精度实时定位的研究与实现[D]. 北京:北京邮电大学, 2013. [20] 张超. 基于电子经纬仪的天文测量系统及应用研究[D]. 郑州:信息工程大学, 2009. |
[1] | JIA Xiuli. GPS multipath effect snow depth estimation by Gaussian process regression-assisted [J]. Bulletin of Surveying and Mapping, 2022, 0(7): 78-82. |
[2] | XI Guangyong, GAO Jun, ZOU Dongyao, SHAO Xiaoya. The modeling of RSSI ranging temperature correction in temperature variation environment [J]. Bulletin of Surveying and Mapping, 2022, 0(7): 83-86. |
[3] | ZHANG Bo, LIU Qiang, XU Guoliang, CAI Renlan, CHENG Feng. Application of GNSS+INS integrated navigation in mine auto-driving trucks [J]. Bulletin of Surveying and Mapping, 2022, 0(7): 143-147. |
[4] | ZHAO Yinzhi, ZOU Jingui, CAI Lixian, HUANG Gege. An ultra wide band indoor positioning method considering electrical delay [J]. Bulletin of Surveying and Mapping, 2022, 0(4): 1-5,31. |
[5] | LIU Zhuo, LI Jia, ZHANG Xiang, GUO Lei, LIU Yanyang, XU Haodong, GU Yunyang, CHEN Chonghua. Obtaining high-precision digital elevation model in Antarctica based on TanDEM-X images and ICESat-2 data [J]. Bulletin of Surveying and Mapping, 2022, 0(4): 72-76. |
[6] | WAN Yingneng, XU Xuehan, LIU Kexian. Integrated navigation algorithm of multi-joint deep-sea vehicle [J]. Bulletin of Surveying and Mapping, 2022, 0(4): 90-95. |
[7] | LUO Youan, JIANG Aiguo, YANG Fuxin, ZHANG Jie, HE Dongxu, XU Yinglong. Application research of BDS precise point positioning on dynamic positioning system of offshore oil drilling rig [J]. Bulletin of Surveying and Mapping, 2022, 0(4): 111-116. |
[8] | XIAO Haowei, WANG Jianglin, GUO Hairong, YANG Liyang. Real-time precise point positioning precision analysis based on PPP-B2b service [J]. Bulletin of Surveying and Mapping, 2022, 0(4): 117-121. |
[9] | GAO Zhiyu, GUO Jinyi, LIU Jie. Application progress of BDS in monitoring crustal deformation [J]. Bulletin of Surveying and Mapping, 2022, 0(3): 32-35. |
[10] | DING Renjun, WANG Youkun, ZHANG Junhua, LIU Chen. Kunming zenith wet delay model based on a backpropagation neural network [J]. Bulletin of Surveying and Mapping, 2022, 0(3): 107-110. |
[11] | QIAN Wenjin, ZHANG Lin, ZHANG Zelie, ZENG Pan, JIANG Ziwei, QU Xiaowen. Assessing the L5 positioning performance of IRNSS and QZSS in their primary service areas: stand-alone and combined with GPS [J]. Bulletin of Surveying and Mapping, 2021, 0(10): 88-93. |
[12] | FENG Zhiqiang, ZHANG Yaodong, HU Danhui, ZHOU Guangyuan, LI Zhaohui, ZHOU Xueming, MAO Xiaopo. Influence analysis of transmission line electromagnetic interference on BDS data quality and accuracy [J]. Bulletin of Surveying and Mapping, 2021, 0(10): 94-97,113. |
[13] | QIAN Wei, YUE Jianping. Application of MSSA in GPS coodinate series analysis [J]. Bulletin of Surveying and Mapping, 2021, 0(9): 49-52,63. |
[14] | ZHANG Shifang, ZHANG Jin. Application of Kalman filter in GNSS monitoring of ground subsidence in Xishan coalfield of Shanxi province [J]. Bulletin of Surveying and Mapping, 2021, 0(9): 103-107. |
[15] | LI Jiangang, LI Honghui, CHAI Xiangjun, WANG Tianyu. Accuracy evaluation of GPS, BDS and GPS+BDS precise point positioning [J]. Bulletin of Surveying and Mapping, 2021, 0(9): 124-129. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||