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REMOTE SENSING FOR LAND & RESOURCES    2016, Vol. 28 Issue (2) : 149-153     DOI: 10.6046/gtzyyg.2016.02.23
Technology Application |
Application of UAV aerophotogrammetry to base-map production in rural land survey
BI Kai1, HUANG Shaolin2
1. National Geomatics Center of China, Beijing 100830, China;
2. Artillery Training Base of General Staff, Zhangjiakou 075000, China
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Abstract  

According to the actual demand of rural land survey base-map production, this paper puts forward the scheme of the application of UAV aerophotogrammetry to rural land survey base-map production, and analyzes the existing basis, with the emphasis placed on the base-map production process and the technical requirements that have to be attained on the basis of UAV Aerophotogrammetry. What the authors propose provides a new solution for the land ownership registration work in data-absent rural area.

Keywords land use change      landscape indices      Fuxian Lake basin      water quality      correlation analysis     
:  TP79  
Issue Date: 14 April 2016
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YANG Yanan
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Cite this article:   
YANG Yanan,WANG Jinliang,CHEN Guangjie, et al. Application of UAV aerophotogrammetry to base-map production in rural land survey[J]. REMOTE SENSING FOR LAND & RESOURCES, 2016, 28(2): 149-153.
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https://www.gtzyyg.com/EN/10.6046/gtzyyg.2016.02.23     OR     https://www.gtzyyg.com/EN/Y2016/V28/I2/149

[1] 国土资源部等五部门.农村地籍和房屋调查技术方案[EB/OL].[2014-08-01].http://www.mlr.gov.cn/zwgk/zytz/201408/t20140811_1326440.htm. Ministry of Land and Resources of the People's Republic of China and Other Fourdepartments.The technical schemeof rural Cadastre and the housing survey[EB/OL].[2014-08-01].http://www.mlr.gov.cn/zwgk/zytz/201408/t20140811_1326440.htm.

[2] 毕凯.无人机数码遥感测绘系统集成及影像处理研究[D].北京:中国测绘科学研究院,2009. Bi K.The Study on The Uav Digital Remote Sensing & Survey System Integration and Images Data Processing[D].Beijing:Chinese Academy of Surveying and Mapping,2009.

[3] 李英成,叶冬梅,薛艳丽,等.GPS辅助空中三角测量技术在无人机海岛测图中的应用[J].测绘科学,2012,37(5):55-57. Li Y C,Ye D M,Xue Y L,et al.Application of GPS supported aerial triangulation technology in the UAV island topographic mapping[J].Science of Surveying and Mapping,2012,37(5):55-57.

[4] 陈洁,杨达昌,杜磊,等.框幅式数字航空摄影飞行质量检查方法[J].国土资源遥感,2014,26(4):91-96.doi:10.6046/gtyyg.2014.04.15. Chen J,Yang D C,Du L,et al.Method for inspection of frame digital aerial photographic quality[J].Remote Sensing for Land and Resources,2014,26(4):91-96.doi:10.6046/gtyyg.2014.04.15.

[5] 国家测绘局.CH/Z3005—2010低空数字航空摄影规范[S].北京:测绘出版社,2010. National Administration of Surveying Mapping and Geoinformation of China.CH/Z3005—2010 Specifications for low-altitude digital aerial photography[S].Beijing:The Publishing House of Surveying And Mapping,2010.

[6] 国家测绘局.CH/Z3004—2010低空数字航空摄影测量外业规范[S].北京:测绘出版社,2010. National Administration of Surveying Mapping and Geoinformation of China.CH/Z3004—2010 Specifications for field work of low-altitude digital aerophotogrammetry[S].Beijing:The Publishing House of Surveying And Mapping,2010.

[7] 张文安,苗小利.数码摄影测量加密点中误差的估算公式改进[J].矿山测量,2010(2):9-10. Zhang W A,Miao X L.Estimation formula improvement of the errors in surveying the photo-grammetric point with digital telegraphy[J].Mine Surveying,2010(2):9-10.

[8] 国家测绘局.CH/T 9008.3—2010基础地理信息数字成果1∶500、1∶1000、1∶2000数字正射影像图[S].北京:测绘出版社,2010. National Administration of Surveying Mapping and Geoinformation of China.CH/T9008.3—2010 Digital products of fundamental geographic information 1∶500,1∶1000,1∶2000 digital orhophoto maps[S].Beijing:The Publishing House of Surveying and Mapping,2010.

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