Date delivery scheme of delay-tolerant mobile sensor networks for high-voltage power transmission line inspection robot

To improve the level of intelligent monitoring, maintenance, and management of transmission lines, research on inspection robots, and key technologies of overhead transmission line have attracted wide attention. With the breakthrough of the theory and technology of the internet of things, robot data...

Full description

Saved in:
Bibliographic Details
Main Authors: FAN Fei, WU Gong-ping, WANG Man, XU Qing-shan, CAO Qi, YANG Song
Format: Article
Language:zho
Published: Science Press 2018-11-01
Series:工程科学学报
Subjects:
Online Access:http://cje.ustb.edu.cn/article/doi/10.13374/j.issn2095-9389.2018.11.015
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1850282736177119232
author FAN Fei
WU Gong-ping
WANG Man
XU Qing-shan
CAO Qi
YANG Song
author_facet FAN Fei
WU Gong-ping
WANG Man
XU Qing-shan
CAO Qi
YANG Song
author_sort FAN Fei
collection DOAJ
description To improve the level of intelligent monitoring, maintenance, and management of transmission lines, research on inspection robots, and key technologies of overhead transmission line have attracted wide attention. With the breakthrough of the theory and technology of the internet of things, robot data transmission based on wireless sensor networks has become an active research area in the field of inspection robotics. Several researchers assume that robots are mobile nodes in wireless sensor networks, and the non-mobile communication node in the network is considered as a static node. The most crucial and difficult aspect of this research is coordinating the relationship among transmission success rate, transmission energy consumption, and delay of dynamic sensors networks. To address this difficulty, a novel method was proposed for the intelligent monitoring and communication system of power grids based on inspection robots. This method aims to realize the remote data collection of inspection robot by delay-tolerant mobile sensor networks for inspection robot (DTMSNR), which is featured by nodes heterogeneity, sparse sensor fields, random mobility, intermittent connectivity, and delay tolerance. It adopts the mobile robot position-based delivery (MPD) method to solve the inadaptability of the traditional methods of sensor networks. A path-constrained random motion model was established, in order to accurately calculate the network pose information of the inspection robot. The MPD adopts the relative position information of the robot and other nodes to compute transmission probability and selects the message transmission path. This method uses mechanisms of robot message priority transfer and failure time to manage the message queue, considering the different delay requirements for messages. Multiple simulation scenarios were performed, and the influences of different parameters with four routing algorithms were discussed. The results indicate that compared with the commonly used DTMSN data transmission methods, the proposed method can provide a higher delivery ratio and lower transport delay under appropriate transmission energy consumption.
format Article
id doaj-art-c4ec11e89c814e18a91fcf13442bab0c
institution OA Journals
issn 2095-9389
language zho
publishDate 2018-11-01
publisher Science Press
record_format Article
series 工程科学学报
spelling doaj-art-c4ec11e89c814e18a91fcf13442bab0c2025-08-20T01:47:54ZzhoScience Press工程科学学报2095-93892018-11-0140111412142110.13374/j.issn2095-9389.2018.11.015Date delivery scheme of delay-tolerant mobile sensor networks for high-voltage power transmission line inspection robotFAN Fei0WU Gong-ping1WANG Man2XU Qing-shan3CAO Qi4YANG Song51) School of Power and Mechanical Engineering, Wuhan University, Wuhan 430072, China;1) School of Power and Mechanical Engineering, Wuhan University, Wuhan 430072, China;1) School of Power and Mechanical Engineering, Wuhan University, Wuhan 430072, China;2) State Grid Jilin Electric Power Co., Ltd., Changchun 130000, China;3) Baishan Power Supply Company, State Grid Jilin Electric Power Co., Ltd., Baishan 134300, China3) Baishan Power Supply Company, State Grid Jilin Electric Power Co., Ltd., Baishan 134300, ChinaTo improve the level of intelligent monitoring, maintenance, and management of transmission lines, research on inspection robots, and key technologies of overhead transmission line have attracted wide attention. With the breakthrough of the theory and technology of the internet of things, robot data transmission based on wireless sensor networks has become an active research area in the field of inspection robotics. Several researchers assume that robots are mobile nodes in wireless sensor networks, and the non-mobile communication node in the network is considered as a static node. The most crucial and difficult aspect of this research is coordinating the relationship among transmission success rate, transmission energy consumption, and delay of dynamic sensors networks. To address this difficulty, a novel method was proposed for the intelligent monitoring and communication system of power grids based on inspection robots. This method aims to realize the remote data collection of inspection robot by delay-tolerant mobile sensor networks for inspection robot (DTMSNR), which is featured by nodes heterogeneity, sparse sensor fields, random mobility, intermittent connectivity, and delay tolerance. It adopts the mobile robot position-based delivery (MPD) method to solve the inadaptability of the traditional methods of sensor networks. A path-constrained random motion model was established, in order to accurately calculate the network pose information of the inspection robot. The MPD adopts the relative position information of the robot and other nodes to compute transmission probability and selects the message transmission path. This method uses mechanisms of robot message priority transfer and failure time to manage the message queue, considering the different delay requirements for messages. Multiple simulation scenarios were performed, and the influences of different parameters with four routing algorithms were discussed. The results indicate that compared with the commonly used DTMSN data transmission methods, the proposed method can provide a higher delivery ratio and lower transport delay under appropriate transmission energy consumption.http://cje.ustb.edu.cn/article/doi/10.13374/j.issn2095-9389.2018.11.015inspection robotdelay-tolerant sensor networksdata deliveryqueue managementtransmission lines monitoring
spellingShingle FAN Fei
WU Gong-ping
WANG Man
XU Qing-shan
CAO Qi
YANG Song
Date delivery scheme of delay-tolerant mobile sensor networks for high-voltage power transmission line inspection robot
工程科学学报
inspection robot
delay-tolerant sensor networks
data delivery
queue management
transmission lines monitoring
title Date delivery scheme of delay-tolerant mobile sensor networks for high-voltage power transmission line inspection robot
title_full Date delivery scheme of delay-tolerant mobile sensor networks for high-voltage power transmission line inspection robot
title_fullStr Date delivery scheme of delay-tolerant mobile sensor networks for high-voltage power transmission line inspection robot
title_full_unstemmed Date delivery scheme of delay-tolerant mobile sensor networks for high-voltage power transmission line inspection robot
title_short Date delivery scheme of delay-tolerant mobile sensor networks for high-voltage power transmission line inspection robot
title_sort date delivery scheme of delay tolerant mobile sensor networks for high voltage power transmission line inspection robot
topic inspection robot
delay-tolerant sensor networks
data delivery
queue management
transmission lines monitoring
url http://cje.ustb.edu.cn/article/doi/10.13374/j.issn2095-9389.2018.11.015
work_keys_str_mv AT fanfei datedeliveryschemeofdelaytolerantmobilesensornetworksforhighvoltagepowertransmissionlineinspectionrobot
AT wugongping datedeliveryschemeofdelaytolerantmobilesensornetworksforhighvoltagepowertransmissionlineinspectionrobot
AT wangman datedeliveryschemeofdelaytolerantmobilesensornetworksforhighvoltagepowertransmissionlineinspectionrobot
AT xuqingshan datedeliveryschemeofdelaytolerantmobilesensornetworksforhighvoltagepowertransmissionlineinspectionrobot
AT caoqi datedeliveryschemeofdelaytolerantmobilesensornetworksforhighvoltagepowertransmissionlineinspectionrobot
AT yangsong datedeliveryschemeofdelaytolerantmobilesensornetworksforhighvoltagepowertransmissionlineinspectionrobot