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MONITORING OF LANDSLIDES WITH MASS MARKET GPS: AN ALTERNATIVE LOW COST SOLUTION

机译:利用大众市场GPS监测滑坡:一种低成本的替代解决方案

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摘要

The territory of Italy is seriously afflicted by hydrological risk, with 82% of its area affected by this phenomenon. In recent years, technologies and advanced research have played an important role in realizing complex automatic systems devoted to landslide monitoring and to alerting the population. Sometimes, the cost of these systems (communications network, sensors, software, technologies) prevents their use, and in particular the cost of sensors has a large impact on the final investment. For example, geodetic GNSS receivers are usually employed to conduct landslide monitoring, but they are costly. Nowadays, new technologies make it possible to use small and efficient low cost single frequency GPS receivers, which are able to achieve a centimetrical or better level of accuracy, in static positioning. The rapid development and diffusion of the GNSS network to provide a positioning service has made it possible to use single frequency receivers, thanks to the use of virtual RINEX. This product is generated by a network of permanent stations. In this research, the actual performance of a mass market GPS receiver was tested, with the purpose of verifying if these sensors can be used for landslide monitoring. A special slide was realized, in order to conduct a dedicated test of the detection of displacements. Tests were carried out considering two factors: acquisition time and distance from the Virtual Station. The accuracy and precision of movement determination were evaluated and compared, for each test, considering the different factors. The tests and results are described in this contribution
机译:意大利领土受到水文风险的严重困扰,其面积有82%受此现象影响。近年来,技术和先进的研究在实现专门用于滑坡监测和预警人口的复杂自动系统中发挥了重要作用。有时,这些系统(通信网络,传感器,软件,技术)的成本会阻止其使用,尤其是传感器的成本会对最终投资产生重大影响。例如,大地导航GNSS接收机通常用于进行滑坡监测,但是价格昂贵。如今,新技术使使用小型高效的低成本单频GPS接收器成为可能,这些接收器在静态定位中可以达到百分之一或更高的精度。 GNSS网络的迅速发展和普及以提供定位服务,这归功于虚拟RINEX的使用,从而可以使用单频接收机。该产品由永久站点网络生成。在这项研究中,测试了大众市场GPS接收器的实际性能,目的是验证这些传感器是否可以用于滑坡监测。为了进行位移检测的专用测试,实现了一个特殊的幻灯片。考虑两个因素进行了测试:采集时间和与虚拟工作站的距离。考虑到不同的因素,对每个测试评估并比较了运动确定的准确性和准确性。该贡献描述了测试和结果

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