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Ground displacement measurement by radio interferometric ranging for landslide early warning

机译:通过无线电干涉测距法测量滑坡预警的地面位移

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In this paper, we propose a novel approach to measuring ground surface displacement at high accuracy by radio interferometric ranging (RIR) with extremely low-cost devices. A major challenge to RIR in accurate measurement is multipath in mountainous environments. We propose a novel RIR scheme called Downslope Interferometric Phase (DIP) to decouple the effect of reflective path from that of line-of-sight path. With a two-path channel model, we find that the displacement errors in DIP fluctuate periodically with respect to measurement frequencies. Based on such a revelation, we propose to employ multiple carrier frequencies from large enough bandwidth to mitigate multipath. Experiments both in open spaces and dense multipath environments show that millimeter level displacement can be detected by DIP within several minutes. With better performance and much lower cost than carrier phase GPS receivers, DIP provides a promising method to build landslide monitoring and early warning systems covering vast areas at reasonable cost.
机译:在本文中,我们提出了一种新颖的方法,可以通过具有极低成本设备的无线电干涉测距(RIR)来高精度地测量地表位移。准确测量中RIR的主要挑战是山区环境中的多径。我们提出了一种新颖的RIR方案,称为下坡干涉相(DIP),以将反射路径的影响与视线路径的影响分开。使用两径通道模型,我们发现DIP中的位移误差相对于测量频率周期性波动。基于这样的启示,我们建议采用足够大带宽的多个载波频率来减轻多径。在开放空间和密集多径环境中进行的实验表明,DIP可以在几分钟内检测到毫米级位移。与载波相位GPS接收机相比,DIP具有更好的性能和更低的成本,它提供了一种有前途的方法来以合理的成本构建覆盖广阔区域的滑坡监测和预警系统。

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