煤矿安全监控系统功能安全要求与分级研究

    Study on functional safety requirements and classification of coal mine safety monitoring system

    • 摘要: 煤矿安全监控系统是保障煤矿安全生产的核心环节。本文基于功能安全理论,结合国际标准IEC 61508和煤矿行业规范,系统研究了安全监控系统的功能安全要求、分级方法及评估流程。首先,从实时监测、冗余设计、故障诊断和应急响应四方面提出功能安全要求,明确瓦斯浓度、顶板压力、通风状态等关键参数的监控阈值与容错机制。其次,结合风险矩阵法与保护层分析(LOPA),建立以风险发生概率(P)和后果严重度(S)为维度的安全完整性等级(SIL)分级模型,并通过故障树分析(FTA)量化系统失效概率。最后,以某煤矿的瓦斯监测系统为例,验证该分级方法的适用性,并提出传感器冗余配置与算法优化建议。研究表明,功能安全分级可有效提升监控系统的可靠性与风险控制能力,为煤矿智能化转型提供支撑。

       

      Abstract: Coal mine safety monitoring system is the core link to ensure production of coal mine safety. Based on the functional safety theory, combined with the International Standard IEC 61508 and the coal mine industry specification, this paper systematically studies the functional safety requirements, classification methods and evaluation process of the safety monitoring system. Firstly, the functional safety requirements are put forward from four aspects of real-time monitoring, redundancy design, fault diagnosis and emergency response, and the monitoring threshold and fault tolerance mechanism of key parameters such as gas concentration, roof pressure and ventilation state are defined. Secondly, combined with the risk matrix method and the layer of protection analysis (LOPA), a safety integrity level (SIL) classification model with risk occurrence probability (P) and consequence severity (S) as dimensions is established, and the failure probability of the system is quantified by fault tree analysis (FTA). Finally, taking the gas monitoring system of a coal mine as an example, the applicability of the classification method is verified, and suggestions on sensor redundancy configuration and algorithm optimization are put forward. The research shows that the functional safety classification can effectively improve the reliability and risk control ability of the monitoring system, and provide support for the intelligent transformation of coal mines.

       

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