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Application of Continuous and Structural ARMA modeling for noise analysis of a BWR coupled core and plant instability event

机译:连续和结构性ARMA建模在BWR堆芯和工厂不稳定事件耦合噪声分析中的应用

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摘要

This paper presents a first application of a novel Continuous and Structural Autoregressive Moving Average (CSARMA) modeling approach to BWR noise analysis. The CSARMA approach derives a unique representation of the system dynamics by more robust and reliable canonical models as basis for signal analysis in general and for reactor diagnostics in particular. In this paper, a stability event that occurred in a Swiss BWR plant during power ascension phase is analyzed as well as the time periods that preceded and followed the event. Focusing only on qualitative trends at this stage, the obtained results clearly indicate a different dynamical state during the unstable event compared to the two other stable periods. Also, they could be interpreted as pointing out a disturbance in the pressure control system as primary cause for the event. To benchmark these findings, the frequency-domain based signal transmission-path (STP) method is also applied. And with the STP method, we obtained similar relationships as mentioned above. This consistency between both methods can be considered as being a confirmation that the event was caused by a pressure control system disturbance and not induced by the core. Also, it is worth noting that the STP analysis failed to catch the relations among the processes during the stable periods, that were clearly indicated by the CSARMA method, since the last uses more precise models as basis.
机译:本文介绍了一种新颖的连续和结构自回归移动平均(CSARMA)建模方法在BWR噪声分析中的首次应用。 CSARMA方法通过更健壮和可靠的规范模型得出系统动力学的唯一表示形式,作为一般信号分析尤其是反应堆诊断的基础。在本文中,分析了瑞士BWR工厂在功率提升阶段发生的稳定性事件以及该事件发生之前和之后的时间段。在此阶段仅关注定性趋势,所获得的结果清楚地表明,与其他两个稳定时期相比,不稳定事件期间的动力状态不同。同样,它们也可以解释为指出压力控制系统中的故障是造成此事件的主要原因。为了对这些发现进行基准测试,还应用了基于频域的信号传输路径(STP)方法。并且使用STP方法,我们获得了如上所述的相似关系。两种方法之间的这种一致性可以认为是该事件是由压力控制系统扰动引起而不是由岩心引起的确认。另外,值得注意的是,STP分析未能捕获稳定期间各个过程之间的关系,CSARMA方法清楚地表明了这一点,因为最后一种方法使用了更精确的模型作为基础。

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