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The inertial technology based 3-dimensional information measurement system for underground pipeline

机译:基于惯性技术的地下管线三维信息测量系统

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摘要

Underground pipeline industry is developing at a very high speed and it is playing an increasingly important role in modem world. However, how to make a precise 3-dimensional survey of underground pipelines becomes a focused issue. Current survey methods have several disadvantages, such as limited depth, sensitivity to electrical-magnetic disturbances, low generality and poor manipulability. Inertial technology is an autonomic, anti-disturbance and high accurate positioning method which has been widely used in navigation systems. An inertial technology based underground pipeline survey system is designed in this paper. Firstly, basic principles including 3-dimensional dead reckoning, pitch and yaw angle measurement and a special survey procedure are introduced. Secondly, the system is structured and its software is designed. Thirdly, several multi-information fusion methods are used to eliminate certain sensors' disadvantages and promote the system's precision. Finally, a series of field tests are introduced to verify the system.
机译:地下管道工业正在以非常高的速度发展,并且在现代世界中发挥着越来越重要的作用。但是,如何对地下管道进行精确的3维测量成为一个关注的问题。当前的勘测方法具有几个缺点,例如深度有限,对电磁干扰的敏感性,通用性低和可操作性差。惯性技术是一种自主,抗干扰和高精度的定位方法,已广泛用于导航系统中。本文设计了一种基于惯性技术的地下管线测量系统。首先,介绍了3维航位推算,俯仰和偏航角测量的基本原理以及特殊的测量程序。其次,对系统进行了结构设计,并设计了软件。第三,几种多信息融合方法被用来消除某些传感器的缺点并提高系统的精度。最后,引入了一系列现场测试以验证系统。

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