Use of GPTS technology in geoinformation security for sustainable development of megacities

Y. Bogdanov, S. Prokopenko, Xin Chen
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Abstract

Summary Passive radar remote sensing of the centers of destruction of natural-technical systems in a wide range of wavelengths is a scientific and technical direction, which allows to obtain qualitatively new information about the stress-strain state of objects immersed in the geological environment. Schemes and principles for the analysis of the interaction of engineering structures with the natural geological environment using airborne geophysical tomography are developed. Mapping and diagnostics of the structure of disturbing influences - risk sources that complicate the operation of real estate and reduce the time between failures. The unevenness of the impacting factors on the part of the rock masses at the locations of linear structures and high-risk structures was discovered by the included observation method. A specification has been developed for a unified air complex for remote sensing of complex structures and city monitoring in order to timely identify life-threatening incidents using manned and unmanned aircraft and working models of hardware and software implementation of the complex units. On the basis of the obtained data, maps and vertical geological sections of stress-strain activity were constructed at various scales and the tendency for the development of hazardous natural ones is calculated and technogenic processes.
利用GPTS技术实现地理信息安全,促进特大城市的可持续发展
在大波长范围内对自然技术系统破坏中心进行被动雷达遥感是一个科学技术方向,它可以获得地质环境中物体应力-应变状态的定性新信息。提出了利用航空地球物理层析成像技术分析工程结构与自然地质环境相互作用的方案和原理。绘制和诊断干扰影响的结构-风险来源,使房地产的操作复杂化,并减少故障之间的时间。采用包含观测方法,发现了线性结构和高危结构位置部分岩体影响因素的不均匀性。制定了用于复杂结构遥感和城市监测的统一空中综合体规范,以便及时识别危及生命的事件,使用有人驾驶和无人驾驶飞机以及复杂单元的硬件和软件实施的工作模型。在此基础上,绘制了不同尺度的应力-应变活动图和垂向地质剖面,并对危险自然灾害的发展趋势进行了计算和工艺处理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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