陈军, 陈斐, 武昊, 陈利军, 韩刚. 互联网+地表覆盖验证及应用[J]. 武汉大学学报 ( 信息科学版), 2018, 43(12): 2225-2232. DOI: 10.13203/j.whugis20180305
引用本文: 陈军, 陈斐, 武昊, 陈利军, 韩刚. 互联网+地表覆盖验证及应用[J]. 武汉大学学报 ( 信息科学版), 2018, 43(12): 2225-2232. DOI: 10.13203/j.whugis20180305
CHEN Jun, CHEN Fei, WU Hao, CHEN Lijun, HAN Gang. Internet+ Land Cover Validation: Methodology and Practice[J]. Geomatics and Information Science of Wuhan University, 2018, 43(12): 2225-2232. DOI: 10.13203/j.whugis20180305
Citation: CHEN Jun, CHEN Fei, WU Hao, CHEN Lijun, HAN Gang. Internet+ Land Cover Validation: Methodology and Practice[J]. Geomatics and Information Science of Wuhan University, 2018, 43(12): 2225-2232. DOI: 10.13203/j.whugis20180305

互联网+地表覆盖验证及应用

Internet+ Land Cover Validation: Methodology and Practice

  • 摘要: 为有效地组织大范围地表覆盖数据验证,需要发动和组织来自不同地域、不同机构的专家,但往往缺少网络化环境下的协同验证方法和工具。针对这一问题,将互联网+、服务计算技术等与地表覆盖验证业务相融合,提出了互联网+地表覆盖验证服务模型,构建了面向互联网+的地表覆盖验证业务流程和方法,研制了基于景观形状指数(landscape shape index,LSI)抽样算法的在线验证系统GLCVal(global land cover validation),为大范围、高分辨率地表覆盖数据验证提供了新思路、新方法。利用所提出的方法与系统,与GEO(Group of Earth Observation)、UN-GGIM(the United Nations Initiative on Global Geospatial Information Management)等组织合作开展了GlobeLand30的全球验证,有效支持了跨区域专家的主动参与、多角色协同,促进了验证资源联通和共享,提高了验证效率。

     

    Abstract: The validation of large-area land cover data is a costly, labor-intensive and time-consuming task with the participation of several experts from different regions and different institutions. Pre-viously, people always used single-machine or off-line software to realize it because of lack of methods and tools which could support online and collaborative validation. Focused on resolving this problem, this paper involves the concept of "Internet+" and technologies of service computing to land cover data validation. Based on this ideal, an "Internet+" oriented service model for land cover data validation is proposed, and then a new online and collaborative validation process is designed. Additionally, to fit the automatic and efficient computing requirements, the LSI(landscape shape index)-based sampling algorithm is put forwarded. At last, we introduce the development of GLCVal platform and an international cooperation practice for validation of GlobeLand30 based on it. The practice is supported by GEO(Group of Earth Observation) and UN-GGIM(the United Nations Initiative on Global Geospatial Information Management), and is promoted enormously by GLCVal platform in the realization of cross-regional cooperation and active participation of experts from different countries. Practice results show the model and algorithm proposed by this paper can provide new idea and method for high resolution land cover data validation in large region, and also increase efficiency of validation.

     

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