Detection Algorithms on GNSS Millimeter Displacement using Orthogonal Functions

Koki Asari, Masayuki Saito, I. Mikami, Y. Kubo, S. Sugimoto
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引用次数: 1

Abstract

This paper presents mathematical algorithms to measure a noise-buried destructive displacement using GNSS (Global Navigation Satellite System) precise positioning and the orthogonal function expansion of its positioning result. In reality, there are 5.25 hundred thousand places in danger of landslide in Japan. The algorithms must retrieve a millimeter-scale displacement in the observation noise, therefore they apply the orthogonal functions from the class of Gegenbauger polynomials and the orthogonal even functions. This method informs the foreboding of a destruction, and will save many lives and infinite property of assets in catastrophic disasters from the present time.
基于正交函数的GNSS毫米位移检测算法
本文提出了利用全球导航卫星系统(GNSS)精确定位测量噪声埋地破坏位移的数学算法及其定位结果的正交函数展开。实际上,日本有52.5万个地方存在山体滑坡的危险。这些算法必须在观测噪声中检索到毫米尺度的位移,因此它们采用了格根包格多项式类中的正交函数和正交偶函数。这种方法预示着一种破坏,将从现在开始挽救许多生命和无限的财产。
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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