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    李超岭, 李丰丹, 李健强, 刘园园, 刘畅, 吕霞. 智能地质调查体系与架构[J]. 中国地质, 2015, 42(4): 828-838.
    引用本文: 李超岭, 李丰丹, 李健强, 刘园园, 刘畅, 吕霞. 智能地质调查体系与架构[J]. 中国地质, 2015, 42(4): 828-838.
    LI Chao-ling, LI Feng-dan, LI Jian-qiang, LIU Yuan-yuan, LIU Chang, LV Xia. Smart geological survey architecture[J]. GEOLOGY IN CHINA, 2015, 42(4): 828-838.
    Citation: LI Chao-ling, LI Feng-dan, LI Jian-qiang, LIU Yuan-yuan, LIU Chang, LV Xia. Smart geological survey architecture[J]. GEOLOGY IN CHINA, 2015, 42(4): 828-838.

    智能地质调查体系与架构

    Smart geological survey architecture

    • 摘要: 提要:中国地质调查局用了近10年时间,在基础地质调查和矿产调查领域基本完成了地质调查全流程数字化过程。在“云”计算与大数据技术等新一代信息技术的兴起大环境下,未来5至10年,地质调查主流程信息化的方向和目标是什么呢?本文基于新一代信息智能技术和智能设备在地质调查数据采集、数据分析处理、数据交换传输、三维建模、信息泛在服务、业务管理全面深度融合的基础上,结合智能空间与普适计算概念给出了智能地质调查定义,提出了基于云计算和Hadoop生态体系为基础的天地空一体化的智能地质调查体系、架构和应用模式,并对其关键技术进行了讨论。

       

      Abstract: Abstract: China Geological Survey has spent nearly 10 years to realize the whole digitized process in the field of fundamental geological and mineral survey. With the generation of new information technologies such as "cloud" computing and big data, what is the orientation and objectives for the main flow informatization of geological survey in the next 5-10 years? On the basis of the new intelligent information technology and smart devices applied to geological survey data acquisition, analysis, exchange transmission, 3D modeling, ubiquitous information services and business management, the definition of smart geological survey has been formulated according to the smart space theory and ubiquitous computing concept. The smart geological survey architecture and application model with the technological integration of Space-Air-Ground has been proposed based on cloud computing and Hadoope ecological system. In addition, the key technology of smart geological survey architecture has been discussed.

       

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