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Hybrid Seismic-Electrical Data Acquisition Station Based on Cloud Technology and Green IoT

机译:基于云技术和绿色物联网的混合地震电气数据采集站

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摘要

Traditional geophysical prospecting instruments cannot fulfill the requirements of deep energy prospecting. The instruments that measure single physical quantities, such as seismic and electrical instruments, have certain limitations. Moreover, the time period required for traditional instruments to collect, acquire, and process data is too long. To address these issues, a hybrid seismic-electrical data acquisition system based on cloud technology and green IoT was proposed and developed. A seismic analog acquisition circuit and an electrical analog acquisition circuit were designed, and the control module was designed and debugged. The system is equipped with a wireless module connected to a wireless-to-4G/5G module, which uploads the data collected by the hybrid seismic-electrical data acquisition station to the cloud platform. The background master control center completes the rapid processing of geophysical data using the robust storage and computing capabilities of the cloud. Meanwhile, it sends control commands to the cloud to control the acquisition system. This system has completed simultaneous prospecting of multiple physical quantities and achieved rapid monitoring through cloud technology. Finally, the system was used to perform fracture monitoring and a comparison of two mines in Daqing City, Heilongjiang Province. The monitoring results were satisfactory. Thus, the presented system can play a role in seismic-electrical prospecting, and can be applied to actual engineering endeavors quickly and reliably.
机译:传统地球物理勘探工具无法满足深度能源勘探的要求。测量单一物理量(如地震和电气器械)的仪器具有一定的限制。此外,传统仪器收集,获取和处理数据所需的时间段太长。为了解决这些问题,提出并开发了一种基于云技术和绿色物联网的混合地震电气数据采集系统。设计了地震模拟采集电路和电气模拟采集电路,并设计并调试控制模块。该系统配备有连接到无线到4G / 5G模块的无线模块,其将由混合地震电气数据采集站收集的数据上载到云平台。背景主控制中心使用云的鲁棒存储和计算功能完成了对地球物理数据的快速处理。同时,它将控制命令发送到云以控制采集系统。该系统已完成多种物理量的同时勘探,并通过云技术实现快速监测。最后,该系统用于执行黑龙江大庆市两矿的裂缝监测和比较。监测结果令人满意。因此,所提出的系统可以在地震电力勘探中发挥作用,并且可以快速可靠地应用于实际工程努力。

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  • 来源
    《Quality Control, Transactions》 |2020年第2020期|31026-31033|共8页
  • 作者单位

    China Univ Geosci Beijing Sch Geophys & Informat Technol Beijing 100192 Peoples R China;

    China Univ Geosci Beijing Sch Geophys & Informat Technol Beijing 100192 Peoples R China;

    Chinese Acad Sci Inst Elect Beijing 100010 Peoples R China;

    China Univ Geosci Beijing Sch Geophys & Informat Technol Beijing 100192 Peoples R China;

    China Univ Geosci Beijing Sch Geophys & Informat Technol Beijing 100192 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    4G; 5G; cloud platform; geophysics; hybrid seismic-electrical; green IoT;

    机译:4g;5g;云平台;地球物理;杂交地震电气;绿色物联网;

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