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Responsiveness of Multi-Channel IEC-61850 Substation Communication Network Reliability Performance to Changes in Repair Factors

机译:多通道IEC-61850变电站通信网络可靠性性能对修复因子的变化的响应性

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摘要

Power distribution centres distribute power to motor control centres in industrial facilities, as well as supply power to medium voltage drives among other loads. In reliability studies, the use of the combinatorial methods to evaluate the reliability of IEC-61850 based SCN in power distribution centres is preferred, owing to the ease of comprehension and applying the methods. The disadvantage of the methods is that repairs are assumed to be perfect and that all system faults are known; whereas it is not the case in practice. Markov model enables the impact of imperfect repairs on the system reliability performance to be investigated using the eigenvalue analysis method based on the concept of linear dynamical systems. The method presented in this paper advances the eigenvalue analysis method and focusses on the incremental responsiveness of the system to imperfect repair factors based on absorbing Markov chain and matrix calculus. The results indicate that even though the system is dependent on repair factors, the system is perfectly inelastic to the repair efficiency factors. However, the diagnostic coverage of the system is the most critical of the two factors, with higher elasticity as the factor approaches 100%. The results also indicate that both sensitivity and elasticity rapidly decrease as the diagnostic coverage of the system decrease. Thus, it is concluded that more emphasis must be put on the system diagnostic coverage because it is embedded in the system design, which can be expensive and practically not achievable once the system is commissioned and is running.
机译:配电中心在工业设施中向电机控制中心分配电力,以及其他负载等中等电压驱动的供电。在可靠性研究中,优选使用组合方法来评估基于IEC-61850的SCN在配电中心中的可靠性是优选的,这是由于易于理解和应用方法。该方法的缺点是假设修理是完美的,并且所有系统故障都是已知的;虽然实际上并非如此。马尔可夫模型可以使用基于线性动力系统的概念的特征值分析方法对系统可靠性性能进行影响。本文提出的方法推进了特征值分析方法,并重点关注系统基于吸收马克可夫链和基质微积分的缺乏修复因素的增量响应性。结果表明,即使系统取决于修复因素,系统也是完全效力的修复效率因素。然而,系统的诊断覆盖是两种因素最关键的,因为因子接近100%,具有更高的弹性。结果还表明,随着系统的诊断覆盖率降低,敏感性和弹性都迅速下降。因此,得出结论,必须更加强调系统诊断覆盖,因为它嵌入系统设计中,一旦系统委托并运行,就可以昂贵且实际上无法实现。

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