矿井灾后救援多源信息采集传输技术装备研究进展与展望

Research progress and prospects for multi-source information collection and transmission technologies and equipment for post-disaster mine rescue

  • 摘要: 矿井灾后救援面临环境复杂、信息获取困难、通信链路中断等多重挑战,高效、可靠的多源信息采集与传输是提升救援效能的关键。系统分析了矿井灾后典型场景特征与救援需求,基于水平巷道救援与垂直钻孔救援2类典型场景,梳理了多源信息采集与传输技术装备的研究现状。针对水平巷道救援场景,介绍了空间结构、环境参数、生命信息及作业设备工况4个维度的信息采集技术装备;从有线通信、无线自组网及有无线融合通信3个层面梳理了信息传输技术进展。针对钻孔救援场景,介绍了钻孔基础信息、孔内深部环境及生命探测3类信息采集技术装备;从有线传输与透地通信2个层面介绍了信息传输技术装备。在此基础上,分析了当前技术装备在环境适应性、传输可靠性、信息融合度及续航能力等方面存在的主要问题,指出未来应重点推进信息采集装备迭代升级、统一数据接口标准、深化多源信息标准化与智能融合,并研发新型储能电池与低功耗调控技术以优化装备续航能力,为矿井灾后水平巷道救援与垂直钻孔救援提供全流程、智能化、高可靠的信息技术支撑,实现矿井灾后的精准、高效救援。

     

    Abstract: Post-disaster mine rescue faces multiple challenges, including complex environments, difficulties in obtaining information, and disrupted communication links. Efficient and reliable collection and transmission of multi-source information are essential for improving rescue effectiveness. This review systematically analyzes the characteristics of typical post-disaster mine scenarios and rescue requirements and examines the current state of research on multi-source information collection and transmission technologies and equipment for two typical scenarios: horizontal roadway rescue and vertical borehole rescue. For horizontal roadway rescue, it presents information collection technologies and equipment covering four dimensions: spatial structure, environmental parameters, life information, and operating conditions of rescue equipment. It also reviews advances in information transmission in terms of wired communication, wireless ad hoc networking, and integrated wired and wireless communication. For borehole rescue, it presents information collection technologies and equipment for basic borehole information, the environment deep within boreholes, and life detection, as well as information transmission technologies and equipment for wired transmission and through-the-earth communication. On this basis, the review analyzes the main limitations of current technologies and equipment in terms of environmental adaptability, transmission reliability, information integration, and operating endurance. It identifies priorities for future development, including iterative upgrades to information collection equipment, unified data interface standards, further standardization and intelligent fusion of multi-source information, and the development of new energy storage batteries and low-power control technologies to improve equipment endurance. These advances will provide intelligent, highly reliable information technology support throughout horizontal roadway rescue and vertical borehole rescue operations, enabling precise and efficient post-disaster mine rescue.

     

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