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A Real-Time Reliable Condition Assessment System for 500kV Transmission Towers Based on Stress Measurement

机译:基于应力测量的500kV输电塔实时可靠状态评估系统

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Transmission power towers play an important role in power delivery systems. In recent years, some important results on reliability of transmission towers have been obtained based on theoretical analysis, but there are very few practical application systems of real-time condition monitoring. This paper proposes a new real-time reliable condition assessment system for 500kV transmission power towers based on stress measurement. The necessity of such systems and the architecture of the online monitoring system will first be presented. Through calculating the stress distribution condition of different components of the transmission tower under typical working conditions, those positions with relatively high failure probability in the transmission tower can be identified monitored for installing the stress sensors on them. A new method is presented for calculating the reliability index of the transmission tower structure is also developed based on the mechanical structure of the tower. In particular, the tower structure is simplified to a series system, and the Ditlevsen’s bounds is used to estimate the reliability of the tower system. Finally, a designed example for the online reliable condition assessment procedure is given using a 500kV oxytropis tower as an illustration.
机译:传输功率塔在动力输送系统中发挥着重要作用。近年来,基于理论分析获得了传输塔可靠性的一些重要结果,但实际情况监测的实际应用系统很少。本文提出了一种基于应力测量的500kV传输动力塔的新型实时可靠状态评估系统。首先将提出这种系统的必要性和在线监测系统的架构。通过在典型的工作条件下计算传输塔的不同部件的应力分布条件,可以识别传输塔中具有相对高的故障概率的那些位置,以监测用于在它们上安装应力传感器。提出了一种用于计算传输塔结构的可靠性指数的新方法也基于塔的机械结构开发。特别地,塔结构被简化为串联系统,并且DITLEVSEN的界限用于估计塔式系统的可靠性。最后,使用500kV oxytropis塔作为图示给出了用于在线可靠状态评估程序的设计示例。

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