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首页> 外文期刊>Nuclear Technology >WAVELET-BASED METHOD FOR INSTABILITY ANALYSIS IN BOILING WATER REACTORS
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WAVELET-BASED METHOD FOR INSTABILITY ANALYSIS IN BOILING WATER REACTORS

机译:基于小波的沸水反应器不稳定性分析方法

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This paper introduces a wavelet-based method to analyze instability events in a boiling water reactor (BWR) during transient phenomena. The methodology to analyze BWR signals includes the following: (a) the short-time Fourier transform (STFT) analysis, (b) decomposition using the continuous wavelet transform (CWT), and (c) application of multiresolution analysis (MRA) using discrete wavelet transform (DWT). STFT analysis permits the study, in time, of the spectral content of analyzed signals. The CWT provides information about ruptures, discontinuities, and fractal behavior. To detect these important features in the signal, a mother wavelet has to be chosen and applied at several scales to obtain optimum results. MRA allows fast implementation of the DWT. Features like important frequencies, discontinuities, and transients can be detected with analysis at different levels of detail coefficients. The STFT was used to provide a comparison between a classic method and the wavelet-based method. The damping ratio, which is an important stability parameter, was calculated as a function of time. The transient behavior can be detected by analyzing the maximum contained in detail coefficients at different levels in the signal decomposition. This method allows analysis of both stationary signals and highly nonstationary signals in the timescale plane. This methodology has been tested with the benchmark power instability event of Laguna Verde nuclear power plant (NPP) Unit 1, which is a BWR-5 NPP.
机译:本文介绍了一种基于小波的方法来分析沸腾反应堆中瞬态现象的不稳定性事件。分析BWR信号的方法包括:(a)短时傅立叶变换(STFT)分析,(b)使用连续小波变换(CWT)的分解以及(c)使用离散量的多分辨率分析(MRA)的应用小波变换(DWT)。 STFT分析允许及时研究分析信号的频谱内容。 CWT提供有关破裂,不连续性和分形行为的信息。为了检测信号中的这些重要特征,必须选择母波并以几种比例应用以获得最佳结果。 MRA允许快速实施DWT。可以通过分析不同细节系数水平来检测重要频率,不连续性和瞬变之类的特征。 STFT用于提供经典方法和基于小波的方法之间的比较。阻尼比是重要的稳定性参数,它是随时间变化的。可以通过分析信号分解中不同级别的详细系数中包含的最大值来检测瞬态行为。这种方法可以分析时标平面中的固定信号和高度非固定信号。此方法已通过Laguna Verde核电站(NPP)1号机组(BWR-5 NPP)的基准功率不稳定事件进行了测试。

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