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金属矿山 ›› 2020, Vol. 49 ›› Issue (11): 66-70.

• 采矿工程 • 上一篇    下一篇

矿用信息传输波分复用光网络大容量路由与波长分配研究

张凤杰,代碧波,杨晓明   

  1. 1. 辽宁轨道交通职业学院,辽宁 沈阳 110023;2. 东北大学资源与土木工程学院,辽宁 沈阳 110819
  • 出版日期:2020-11-15 发布日期:2020-12-22
  • 基金资助:
    “十三五”国家重点研发计划项目(编号:2018YFC0604401)

Study on Large Capacity Routing and Wavelength Assignment Algorithms for Wavelength Division Multiplexing Optical Networks for Information Transmitting in Underground Mines

ZHANG FengJie,DAI Bibo,YANG Xiaoming   

  1. 1. Liaoning Guidaojiaotong Polytechnic Institute,Shenyang 110023,China; 2. School of Resource and Civil Engineering,Northeastern University,Shenyang 110819,China
  • Online:2020-11-15 Published:2020-12-22

摘要: 针对地下矿山网络系统复杂,如何实现采集的大数据信息低延迟、高速率传输的问题,通过构建地下矿山软件定义的波分复用光网络,以中央总控制网络为基础,数学化描述了地下矿山网络模型。通过最 小化使用波长索引号的方式减小了分支网络业务的阻塞率,优化了地下矿山网络的分支网络业务承载能力。通过数值仿真对比分析了最大容量优先、最短距离优先和最大容量/跳数优先3种大容量的路由与波长分配算 法,数值验证了地下矿山中央主控网络能够提高网络大数据信息承载能力和提高网络频谱资源的利用效率,证实了所设计的大容量路由与波长分配算法的可行性与有效性。研究表明:相较于SDF和MCF算法,MCHF算法 具有较低的阻塞率。因此,采用地下矿山中央主控网络传输,既能满足地下矿山采集的大数据信息承载能力和网络频谱资源的利用效率,又可保证所采集的大数据信息低成本、低延迟和高速率传输。

关键词: 地下矿山, 软件定义网络, 波分复用光网络, 路由与资源分配算法

Abstract: In view of the complexity of underground mine network system,how to realize the low delay and high rate transmission of big data information collected,the underground mine network model was described mathematically by constructing the WDM optical network defined by underground mine software and based on the central master control network.Blocking probability of branch network service was reduced by minimizing the use of wavelength index, and the load capacity of branch network was optimized.Through numerical simulation analysis of the maximum capacity of priority,the shortest distance and maximum capacity/hop preference 3 kinds of routing and wavelength assignment algorithms of large capacity,numerical results show that the central control network of underground mines can improve the carrying capacity of big data information and the utilization efficiency of network spectrum resources.The feasibility and effectiveness of the proposed algorithm for large capacity routing and wavelength assignment were verified.The study results show that compared with SDF and MCF algorithm,MCHF algorithm has a lower blocking probability.Therefore,the adoption of underground mine central master control network transmission can not only meet the carrying capacity of big data collected from underground mines and the utilization efficiency of network spectrum resources,but also ensure the low cost, low delay and high rate transmission of the collected big data information.

Key words: underground mines, software-defined networking, wavelength division multiplexing optical network, routing and resource allocation algorithms