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Method for processing global position system (GPS) deformation monitoring data

A technology for deformation monitoring and observation data, applied in measuring devices, using wave/particle radiation, instruments, etc., can solve problems such as difficult accuracy and early warning

Active Publication Date: 2013-06-12
HUNAN ZHILI ENG SCI & TECH
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Problems solved by technology

[0005] Aiming at the problem that the method for processing GPS deformation monitoring data in the prior art cannot avoid jumps, which makes it difficult to accurately warn according to the monitoring results, the present invention proposes a novel method for processing GPS deformation monitoring data

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  • Method for processing global position system (GPS) deformation monitoring data

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Embodiment Construction

[0041] Hereinafter, the present invention will be described in detail with reference to the accompanying drawings.

[0042] The purpose of the present invention is to overcome the disadvantages of the method for processing GPS deformation monitoring data in the prior art, and provide a GPS single-epoch deformation monitoring data processing method based on deformation inspection.

[0043] figure 1 A flow diagram of the method according to the invention is shown.

[0044] refer to figure 1 , according to the method of the present invention mainly comprises the following steps:

[0045] The first step: Obtain the current epoch observation data and broadcast ephemeris data of the reference station and monitoring station, and use the phase observation value to form a double-difference observation equation.

[0046] Step 2: According to the characteristics of the deformation monitoring object, set the maximum deformation amount that can occur between two epochs.

[0047] The th...

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Abstract

The invention provides a method for processing global position system (GPS) deformation monitoring data. The method for processing the GPS deformation monitoring data comprises (1) obtaining present epoch observation data and broadcast ephemeris data of a base station and a monitoring station, and forming a double-difference observation equation by using phase observation values; (2) setting a maximum deformation quantity between two epochs; (3) adopting a Cholesky to resolve and construct an ambiguity search space; (4) searching the ambiguity, and enabling a variance ratio to be larger than 3; (5) obtaining fixed solution coordinates X, Y and Z of a single epoch whole cycle ambiguity and a convariance matrix of the single epoch whole cycle ambiguity of a monitoring point; (6) using an average gap method to carry out deformation detection on a deformation value between a present epoch and a previous epoch; (7) after finishing the detection of (6), using a robust least square static solution by superposition of two epoch observation equations as a result of the present epoch, or obtaining a result of the present epoch according to a robust sequential adjustment. The method for processing the GPS deformation monitoring data is accurate.

Description

technical field [0001] The invention relates to a method for processing data, in particular to a method for processing GPS deformation monitoring data. Background technique [0002] With the development of GPS technology, GPS has been increasingly used for deformation monitoring. However, in the deformation monitoring environment, usually the multipath or diffraction signals are strong, resulting in a high frequency of cycle slips. Correlation least squares non-correlation adjustment method (LAMBDA), Cholesky decomposition search method, etc. all need to use the observation data information of multiple epochs within a period of time, and the observation data of these multiple epochs cannot have cycle slips. Otherwise it will be very difficult to determine the overall ambiguity. [0003] Therefore, in the application of deformation monitoring, the processing of GPS data generally adopts the single epoch solution method to avoid cycle slip detection, that is, according to th...

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01B15/06
Inventor 朱自强戴吾蛟杨文韬曾凡河周勇谢依胜
Owner HUNAN ZHILI ENG SCI & TECH
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