基于ELF-EP通信的管道机器人跟踪定位技术研究

Hongjun Chen, H. Qi, Xiaohua Zhang
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引用次数: 3

摘要

管道爬行机器人的跟踪定位技术在管壁检测、避障、管道维护等工业工程应用中是不可缺少的。所有这些要求都是建立在管道设备内外通信的基础上实现的。一般来说,高频电磁波是首选的方法,因为它的技术成熟,如GPS,射频等。然而,金属管道的封闭环境屏蔽了电磁波的传播。多种射线已成功应用于管道检测和定位,但对环境和生物危害严重。提出了一种利用极低频电磁脉冲(ELFEP)在金属管壁屏蔽外穿透能力强的可靠通信方法。分析了极低频极电位的传播规律,分别讨论了频率在低导电介质和导体中对传播距离的影响。通过分析极低频电位沿管道的分布机理,提出了一种有效的定位方法。大量的实验室实验和工业工程实验验证了该技术的适用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Research of pipeline robot tracing & localization technology based on ELF-EP communication
The tracing and localization technology of pipeline crawling robot is indispensable in industrial engineering application, such as pipe-wall inspection, obstacle avoidance, and pipeline maintenance etc. All these requirements are achieved based on communication between outside and inside of pipeline equipments. Generally speaking, high frequency electromagnetic wave is the preferred method, for its mature technique, such as GPS, RF etc. However, the closed environment of metal pipeline shields the propagation of electromagnetic wave. Though many kinds of ray have been successfully applied in pipeline inspection and localization, there are serious hazards to environment and biology. This paper presents a reliable communication method by applying extreme low frequency electromagnetic pulse (ELFEP) which has advanced penetrating ability outside metal pipe-wall shielding. The propagation rule of ELF-EP is analyzed, and how frequency affects propagation distance is talked respectively through low electric conductive medium and conductor. An effective localization method is presented by analyzing the distributing mechanism of ELF-EP along pipeline. Lots of experiments in Lab and industrial engineering have verified the applicability of this technique.
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