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Technique on the Disaster Protection Monitoring of Construction Sites based on Spatial Information and GNSS/USN/loT

机译:基于空间信息和GNSS / USN / LOT的建筑工地灾害保护监测技术

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The monitoring technique by combination of the measurement method and the fine precision of the sensor collecting the satellite-based information that can determine the displacement space is available in a variety of diagnostic information and the GNSS by first sensor it is being requested from them. Be large and that the facility is operated nationally distributed torsional displacement of the terrain and facilities caused by such natural disasters progress of various environmental factors and the surroundings. To diagnose this spatial information, which contains the various sensors and instruments tracks the precise fine displacement of the main facilities and the first reference in the Geospatial or more three-dimensional detailed available map and location information using the installed or the like bridges and tunnels produced to a USN/IoT change at any time, each sensor installed on the facility is to collect and integrate it precise positioning and environmental factors. In other words, by combining the various positioning analysis of mm-class for the facility main area observed is required to constantly in the real time information of the USN/IoT environment sensor, and to utilize this as a precise fine positioning information to the precise fine displacement of the semi-permanent main facilities It managed to be efficient against. In this study for this installation the receiving system is relatively accessible to enable easy USN/IoT base line positioning to the target bridges, and this by transmits the received data in real time using the wireless WiFi/Bluetooth daily hourly bag bridges and related facilities and to automatically process a fine position displacement. Analyzing the results presented to a method capable of real-time monitoring for a large structure or facility to disaster prevention.
机译:通过组合测量方法和传感器的细精度来组合的监测技术,该传感器收集基于卫星的信息,可以确定位移空间的各种诊断信息和通过第一传感器的GNSS,它被请求。很大,并且该设施是通过各种环境因素和周围环境的自然灾害进展而导致地形和设施的国家分布式扭转位移。要诊断该空间信息,其中包含各种传感器和仪器,跟踪主设备的精确精细位移和地理空间或更多三维详细可用地图和使用安装的桥梁和隧道的位置信息的第一个参考在任何时候都是USN / IOT更改,设施上安装的每个传感器是收集和整合其精确定位和环境因素。换句话说,通过组合在USN / IOT环境传感器的实时信息中不断地观察到的设施主区域的各种定位分析,并将其用作精确的精细定位信息,以确切地半永久性设施的精细位移,它设法效率效率。在本研究中,该安装的接收系统相对可接近,使得能够易于USN /物联网基线定位到目标桥梁,并且这通过使用无线WiFi /蓝牙每小时袋桥和相关设施来实时发送接收的数据自动处理精细位置位移。分析呈现给能够实时监测的方法,对大型结构或设施进行防灾。

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