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ON CAUSALITY ANALYSIS OF NUCLEAR REACTOR NOISE USING PARTIAL DIRECTED COHERENCE

机译:部分定向相干性的核反应堆噪声因果关系分析

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This paper represents a first application of a causality technique based on the so-called partial directed coherence (PDC), widely applied in neuroscience and econometrics, to nuclear reactor signal noise analysis with the aim to examine and investigate the information flow paths and the cause-and-effect connections within a multivariate system, i.e. among different reactor system signals, e.g. ex/in-core neutron detectors and process signals. In this context, a PDC-based causality analysis algorithm has been implemented and several verification analyses have been carried out in order to qualify such technique for causality problems in nuclear power plants (NPP). To this aim, the algorithm has been verified first for a simple analytical model then it was applied to a simulation of a boiling water reactor (BWR) problem using the transient nodal code SIMULATE-3K (S3K), where a perturbation in the feedwater flow variable has been introduced. The goal is to illustrate the capabilities of this technique to capture the source of the system fluctuations and also to investigate how the perturbation is propagating within the system. In addition, numerical noise disturbances observed in a TRACE-S3K steady-state calculation were analyzed with the PDC-based causality method and results show a big potential of such technique in indicating the sources of possible numerical instabilities of complex systems. Finally, a real stability event, occurred in a Swiss NPP, has been studied with the current technique in order to identify the cause of the observed oscillations at a certain nominal frequency, and results show the potential of the technique to indicate possible rout-of-cause relationships between the examined signals. The current qualification of this technique in nuclear reactor noise analysis provides thereby confidence for its capabilities in signal diagnostics and causality studies.
机译:本文代表了一种基于因果关系技术的因果关系技术的首次应用,该因果关系技术广泛应用于神经科学和计量经济学,用于核反应堆信号噪声分析,旨在检查和研究信息流的路径和原因多变量系统内(即不同反应堆系统信号之间)的效果连接前/核心中子探测器和过程信号。在这种情况下,已经实施了基于PDC的因果关系分析算法,并进行了几次验证分析,以使这种技术适用于核电厂(NPP)的因果关系问题。为此,该算法首先针对简单的分析模型进行了验证,然后将其应用于使用瞬态节点代码SIMULATE-3K(S3K)的沸水反应堆(BWR)问题的模拟,其中给水流中存在扰动变量已被引入。目的是说明该技术捕获系统波动源的能力,并研究扰动如何在系统内传播。此外,使用基于PDC的因果关系方法分析了在TRACE-S3K稳态计算中观察到的数值噪声干扰,结果表明,这种技术在指示复杂系统可能的数值不稳定性的来源方面具有很大的潜力。最后,使用当前技术对瑞士核电厂中发生的实际稳定性事件进行了研究,以便确定在一定标称频率下观察到的振荡的原因,结果表明该技术有潜力表明可能的溃败。 -导致检查信号之间的关系。因此,该技术在核反应堆噪声分析中的当前资质为其在信号诊断和因果关系研究中的能力提供了信心。

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