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Real-time wireless multi-hop protocol in underground voice communication

机译:地下语音通信中的实时无线多跳协议

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摘要

The underground communication in tunnels and mines is very challenging due to the hostile nature of the environments and to the propagation issues that electromagnetic waves suffer there. Communication is often unidirectional (e.g. in mines) or very costly (e.g. leaky feeder in road tunnels) and hard to install and maintain. This work proposes the use of multi-hop ad-hoc networks to provide multimedia communication between mobile nodes in such a hostile environments, relying on a complete hardware/software, cheap and easy-to-setup platform that can be used both as temporary or fixed infrastructure or as communication backbone in emergency scenarios like mine accidents or a tunnel collapse. The communication is based on the Real-Time Multi-hop Protocol (RT-WMP) and its QoS extension executed over several nodes equipped with specific hardware. This protocol manages delay sensitive messages and the node mobility across the network while the QoS extension is responsible for allowing the end-to-end voice communication. The specific topology and situation have driven to a specialization of RT-WMP to better perform in this type of environments, taking advantage of the a priori (partial) knowledge about the topology. This proposal was tested in a real application in the Somport tunnel, the about 8 km-long railroad linking Canfranc, Spain with Pau, France.
机译:由于环境的敌对性质以及电磁波在此处遭受的传播问题,隧道和矿山中的地下通信非常具有挑战性。通信通常是单向的(例如在矿井中)或非常昂贵的(例如在公路隧道中漏水的馈线),并且难以安装和维护。这项工作提出了使用多跳ad-hoc网络在这种敌对环境中提供移动节点之间的多媒体通信的功能,它依赖于完整的硬件/软件,便宜且易于设置的平台,该平台既可以用作临时平台,也可以用作临时平台。固定基础设施或在紧急情况下(例如矿难或隧道倒塌)作为通信骨干。该通信基于实时多跳协议(RT-WMP),并且其QoS扩展在配备了特定硬件的几个节点上执行。此协议管理延迟敏感消息和网络上的节点移动性,而QoS扩展负责允许端到端语音通信。特定的拓扑和情况已促使RT-WMP进行专业化,以利用此类拓扑的先验(部分)知识在此类环境中更好地执行。该建议书已在连接西班牙Canfranc和法国Pau的约8公里长的铁路Somport隧道的实际应用中进行了测试。

著录项

  • 来源
    《Ad hoc networks》 |2013年第4期|1484-1496|共13页
  • 作者单位

    Robotic, Perception and Real Time group, Aragon Institute for Engineering Research (I3A), Universidad de Zaragoza, Zaragoza, Spain;

    Robotic, Perception and Real Time group, Aragon Institute for Engineering Research (I3A), Universidad de Zaragoza, Zaragoza, Spain;

    Robotic, Perception and Real Time group, Aragon Institute for Engineering Research (I3A), Universidad de Zaragoza, Zaragoza, Spain;

    Robotic, Perception and Real Time group, Aragon Institute for Engineering Research (I3A), Universidad de Zaragoza, Zaragoza, Spain;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    MANET; real-time networks; underground environment; QoS;

    机译:移动网实时网络;地下环境;服务质量;

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