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Online Monitoring and Lifetime Estimations of Materials for Electrical Insulation

机译:电气绝缘材料的在线监测和寿命估算

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High voltage equipment has irreplaceable position in power generation, distribution and delivery. As high reliability is demanded, there is strong effort to keep continuous energy supply without any interruption caused by unplanned outages. Therefore monitoring systems and devices are involved to follow and describe the state of operated machinery and alert if unexpected situation occur. In case of electrical machines and transformers especially, the key part to monitor is the insulation subsystem of the machine. Various diagnostic parameters are to be monitored, e.g. loading, temperature, gas analysis, partial discharges activity, bushings condition, etc. The more parameters is obtained, the more precise may be the further actions. Of course for the most precise description of insulating system state it is necessary to include all available information. However the more parameters are monitored, the harder is to make a simple overview and future development prognosis and the more complex the matter gets. A simple, however widely applicable methodology of evaluation of these diagnostic parameters must be applied to perform simple description of operated object. The paper deals with the most important aspects of monitoring. The choice of diagnostic parameters and accessible points to measure is discussed. Further setting the criteria values and evaluation of diagnostic parameters with regards to material lifetime expectancy is described. As measured parameters are obtained, a simple methodology for evaluation with strong explanatory power is proposed. The field experience with such monitoring systems brings another trouble, which is false alarm alerts and the reliability of monitoring system itself, which is further discussed in the paper.
机译:高压设备在发电,配电和输送中占有不可替代的地位。由于要求很高的可靠性,因此要努力保持连续的能源供应,而不会因计划外的中断而造成任何中断。因此,涉及监视系统和设备来跟踪和描述所操作的机器的状态,并在发生意外情况时发出警报。特别是在电机和变压器的情况下,监视的关键部分是电机的绝缘子系统。各种诊断参数将被监控,例如负载,温度,气体分析,局部放电活动,套管状态等。获得的参数越多,则进一步的动作可能越精确。当然,对于绝缘系统状态的最精确描述,必须包括所有可用信息。但是,监视的参数越多,进行简单的概述和将来的开发预后就越困难,事情变得越复杂。必须应用一种简单但广泛适用的评估这些诊断参数的方法,以对操作对象进行简单描述。本文涉及监视的最重要方面。讨论了诊断参数和可测量点的选择。描述了关于材料预期寿命的进一步设置标准值和诊断参数的评估。当获得测量参数时,提出了一种具有强大解释力的简单评估方法。这种监视系统的现场经验带来了另一个麻烦,那就是虚假警报和监视系统本身的可靠性,本文将对此进行进一步讨论。

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