[1]贺海涛.面向智慧矿山的设备通信协议设计[J].计算机技术与发展,2023,33(10):73-79.[doi:10. 3969 / j. issn. 1673-629X. 2023. 10. 012]
 HE Hai-tao.Design of Equipment Communication Protocol for Intelligent Mine[J].,2023,33(10):73-79.[doi:10. 3969 / j. issn. 1673-629X. 2023. 10. 012]
点击复制

面向智慧矿山的设备通信协议设计()
分享到:

《计算机技术与发展》[ISSN:1006-6977/CN:61-1281/TN]

卷:
33
期数:
2023年10期
页码:
73-79
栏目:
网络空间安全
出版日期:
2023-10-10

文章信息/Info

Title:
Design of Equipment Communication Protocol for Intelligent Mine
文章编号:
1673-629X(2023)10-0073-07
作者:
贺海涛
神东煤炭集团有限责任公司,陕西 神木 719300
Author(s):
HE Hai-tao
Shendong Coal Group Co. ,Ltd. ,Shenmu 719300,China
关键词:
智慧矿山通信协议数据模型软总线身份认证
Keywords:
intelligent minecommunication protocoldata modelsoft busidentity authentication
分类号:
TP393. 0
DOI:
10. 3969 / j. issn. 1673-629X. 2023. 10. 012
摘要:
针对传统矿山感知层网络设备通信协议存在的开放性、实时性和安全性等问题,该文主要围绕智慧矿山通信协议展开研究,在架构层面改进了智慧矿山系统,设计了智慧矿山工业物联网的分层体系结构,并提出了智慧矿山设备通信协议改进方案。 基于矿鸿通信协议和动态地址命名解析服务,研究了统一数据模型与通信协议的信息交互方案,提升了矿山系统的开放性,促进多体系、多设备的互联互通。 在此基础上,结合分布式软总线技术与邻居发现协议、软总线组网技术和轻量化协议三种技术,提出了一种实时矿山数据传输方法,减少数据通信时延,提高数据传输的实时性;依据协议的加密技术、可信执行环境和全生命周期的数据保护,研究了如何在智慧矿山设备通信协议中建立完善的身份认证机制、构建安全的数据传输环境、形成可靠的全周期安全管理,保证了通信数据和通信协议的安全性。
Abstract:
Aiming at the problems of openness, real - time and security of traditional mine perception layer network equipmentcommunication protocols,we mainly focus on intelligent mine communication protocols,improve the intelligent mine system at the architectural level,design a layered architecture of intelligent mine industrial IoT,
and propose an intelligent mine equipment communicationprotocol improvement scheme. Based on the mine Hong communication protocol and dynamic address naming resolution service,the information interaction scheme of unified data model and communication protocol is studied, which improves the openness of the minesystem and promotes the interconnection of multiple systems and devices. On this basis,combining distributed soft bus technology withthree technologies of neighbor discovery protocol, soft bus networking technology and lightweight protocol, a real - time mine datatransmission method is proposed to reduce the data communication time delay and improve the real-time data transmission. Based on the protocol's encryption technology, trusted execution environment and whole life cycle data protection, it is studied how to establish aperfect identity in the intelligent mine equipment communication protocol Based on the encryption technology of the protocol,the trustedexecution environment and the whole-life data protection,we study how to establish a perfect authentication mechanism,build a securedata transmission environment and form a reliable full-cycle security management in the communication protocol of intelligent mining equipment,which ensures the security of communication data and communication protocol.

相似文献/References:

[1]于涛 王健.基于Socket通讯技术的上层监控软件的实现[J].计算机技术与发展,2009,(03):243.
 YU Tao,WANG Jian.Implementation of Upper-Layer Monitoring Software Based on Socket[J].,2009,(10):243.
[2]耿丽丽 余雪丽.基于SOAP的通信协议本体建模[J].计算机技术与发展,2010,(08):63.
 GENG Li-li,YU Xue-li.SOAP-Based Model of Communication Protocol Ontology[J].,2010,(10):63.
[3]王家顺 邹红霞 高永明.基于LabVIEW的空间机器人通信协议集成研究[J].计算机技术与发展,2012,(03):157.
 WANG Jia-shun,ZOU Hong-xia,GAO Yong-ming.Research on Communication Protocol Integrated about Space Robot Based on LabVIEW[J].,2012,(10):157.
[4]陈瑞林,郑羽.基于ARM9的UDP协议栈的设计与实现[J].计算机技术与发展,2013,(05):22.
 CHEN Rui-lin,ZHENG Yu.Design and Implementation of UDP Protocol Stack Based on ARM9[J].,2013,(10):22.
[5]张伟,周峰,黄河,等.管网SCADA系统通信协议一致性测试方法研究[J].计算机技术与发展,2014,24(01):224.
 ZHANG Wei[],ZHOU Feng[],HUANG He[],et al.Research on Conformance Testing Method of Communication Protocol in Oil/Gas Pipeline SCADA System[J].,2014,24(10):224.
[6]暴建民[],汪凯[],暴晨奇[]. 基于USPIOT统一接口网络通信层的业务缓冲机制[J].计算机技术与发展,2014,24(10):93.
 BAO Jian-min[],WANG Kai[],BAO Chen-qi[]. A Service Buffering Mechanism Based on Unified Interface Network Communications Layer of USPIOT Platform[J].,2014,24(10):93.
[7]宋玲,蔡祥宝. 雷达主机与雷达伺服通信接口设计[J].计算机技术与发展,2017,27(09):197.
 SONG Ling,CAI Xiang-bao. Design of Communication Interface between Radar Center and Radar Servo[J].,2017,27(10):197.

更新日期/Last Update: 2023-10-10