|本期目录/Table of Contents|

[1]张伟,李泽亚,张充,等.基于WSN的流程行业安全生产数据多优先级多路径传输方法*[J].中国安全生产科学技术,2023,19(9):5-11.[doi:10.11731/j.issn.1673-193x.2023.09.001]
 ZHNAG Wei,LI Zeya,ZHANG Chong,et al.Multi-priority and multi-path data transmission method for work safety data in process industries based on WSN[J].JOURNAL OF SAFETY SCIENCE AND TECHNOLOGY,2023,19(9):5-11.[doi:10.11731/j.issn.1673-193x.2023.09.001]
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基于WSN的流程行业安全生产数据多优先级多路径传输方法*
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《中国安全生产科学技术》[ISSN:1673-193X/CN:11-5335/TB]

卷:
19
期数:
2023年9期
页码:
5-11
栏目:
学术论著
出版日期:
2023-09-30

文章信息/Info

Title:
Multi-priority and multi-path data transmission method for work safety data in process industries based on WSN
文章编号:
1673-193X(2023)-09-0005-07
作者:
张伟李泽亚张充张建荣
(华中科技大学 土木与水利工程学院,湖北 武汉 430074)
Author(s):
ZHNAG Wei LI Zeya ZHANG Chong ZHANG Jianrong
(School of Civil and Hydraulic Engineering,Huazhong University of Science and Technology,Wuhan Hubei 430074,China)
关键词:
流程行业安全生产无线传感网络多优先级多路径数据传输
Keywords:
process industry work safety wireless sensor network (WSN) multi-priority multi-path data transmission
分类号:
X924
DOI:
10.11731/j.issn.1673-193x.2023.09.001
文献标志码:
A
摘要:
为区分基于无线传感网络(wireless sensor network,WSN)的流程行业安全生产监测数据的优先级,保证关键安全生产决策数据的高质量、低时延传输,减少监测系统对生产事故的误判或漏判现象发生,通过建立实现多层级数据融合的分簇监测网络架构,划分流程安全生产过程中3个级别的数据类型,并提出数据多优先级多路径传输方法。研究结果表明:与传统基于WSN的传输方法相比,本文提出的基于WSN的流程行业安全生产数据多优先级多路径传输方法能够提升高优先级数据传输的及时性和可靠性,有利于安全生产的准确决策。研究结果可为基于WSN的流程行业安全生产监测提供参考。
Abstract:
In order to distinguish the priority of work safety monitoring data in process industries based on wireless sensor networks (WSN),and ensure the high-quality and low-delay transmission of critical work safety decision-making data,thereby reduce the occurrence of misjudgment or missed judgment of production accidents by the monitoring system,a clustering monitoring network architecture for realizing multi-level data fusion was established,then three levels of data types during the process work safety were classified,and a multi-priority and multi-path transmission method of data was proposed.The research results show that compared with traditional WSN-based transmission methods,the proposed method can improve the timeliness and reliability of high-priority data transmission,which is conducive to the accurate decision-making of work safety.The research results can provide reference for the work safety monitoring of process industries based on WSN.

参考文献/References:

[1]索寒生,闫雅琨,李鹏飞,等.流程行业智能工厂IT组织与治理架构设计研究[J].计算机与应用化学,2018,35(6):490-497. SUO Hansheng,YAN Yakun,LI Pengfei,et al.Research on IT organization and governance architecture design of intelligent factory in process industries [J].Computers and Applied Chemistry,2018,35(6):490-497.
[2]WANG B,WANG Y.Big data in safety management:an overview[J].Safety Science,2021,143(S1):105414.
[3]WANG B,WU C.Safety informatics as a new,promising and sustainable area of safety science in the information age-sciencedirect[J].Journal of Cleaner Production,2020,252:119852.
[4]雷雨,吴超,闪顺章,等.安全信息感知的不确定性分析与建模[J].情报杂志,2018,37(5):154-160. LEI Yu,WU Chao,SHAN Shunzhang,et al.Uncertainty analysis and modeling of safety information perception[J].Journal of Intelligence,2018,37(5):154-160.
[5]王秉,王渊洁.安全情报失误致因模型研究[J].情报理论与实践,2021,44(1):36-41. WANG Bing,WANG Yuanjie.Study on the cause model of safety & security intelligence failure[J].Information Studies:Theory & Application,2021,44(1):36-41.
[6]ZHOU X B,PENG T.Application of multi-sensor fuzzy information fusion algorithm in industrial safety monitoring system [J].Safety Science,2020,122:104531.
[7]HE R,ZHU J Y,CHEN G M,et al.A real-time probabilistic risk assessment method for the petrochemical industry based on data monitoring[J].Reliability Engineering and System Safety,2022,226:108700.
[8]LYU L,CHEN C C,YAN J,et al.State estimation oriented wireless transmission for ubiquitous monitoring in industrial cyber-physical systems [J].IEEE Transactions on Emerging Topics in Computing,2016(99):1-1.
[9]关新平,陈彩莲,杨博,等.工业网络系统的感知-传输-控制一体化:挑战和进展[J].自动化学报,2019,45(1):25-36. GUAN Xinping,CHEN Cailian,YANG Bo,et al.Towards the integration of sensing,transmission and control for industrial network systems:challenges and recent developments [J].Acta Automatica Sinica,2019,45(1):25-36.
[10]DASH R K,CENGIZ K,ALSHEHRI Y A,et al.A new and reliable intelligent model for deployment of sensor nodes for IoT applications[J].Computers and Electrical Engineering,2022,101:107959.
[11]KIM D Y,KIM S.Data aggregation-based transmission method in ultra-dense wireless networks[J].Intelligent Automation & Soft Computing,2023,35(1):727-737.
[12]王秉,吴超.安全信息供给:解决安全信息缺失的关键[J].情报杂志,2018,37(5):146-153. WANG Bing,WU Chao.Safety-related information provision:the key to reducing the lack of safety-related information[J].Journal of Intelligence,2018,37(5):146-153.
[13]WANG Q,JIANG J.Comparative examination on architecture and protocol of industrial wireless sensor network standards [J].IEEE Communications Surveys & Tutorials,2016,18(3):2197-2219.
[14]金瑞,刘作学,王俊达.基于全网时帧改变的TDMA Ad Hoc时隙分配协议[J].计算机应用,2018,38(S1):124-130. JIN Rui,LIU Zuoxue,WANG Junda.TDMA Ad Hoc time slot assignment protocol based on change of global time frame[J].Journal of Computer Applications,2018,38(S1):124-130.
[15]姚引娣,王磊.基于LoRa组网的多优先级时隙分配算法[J].计算机工程与设计,2020,41(3):639-644. YAO Yindi,WANG Lei.Multi-priority time slot allocation algorithm based on LoRa networking [J].Computer Engineering and Design,2020,41(3):639-644.
[16]XU H H,LIU K,GUAN X P.Time slots allocating and multicycle scheduling in IWSN for narrow process automation [J].International Journal of Distributed Sensor Networks,2014,10(6):14-19.

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备注/Memo

备注/Memo:
收稿日期: 2023-03-21
* 基金项目: 国家重点研发计划项目(2021YFB3301100)
作者简介: 张伟,博士,副教授,主要研究方向为安全复杂系统、安全智能监控、安全信息学。
通信作者: 李泽亚,硕士研究生,主要研究方向为安全智能监控、安全生产数字化管控理论。
更新日期/Last Update: 2023-10-12