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Study of the bias of the MTC estimate by noise analysis due to the presence of feedback

机译:由于存在反馈而通过噪声分析研究MTC估计的偏差

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This paper discusses the bias of the non-parametric Moderator Temperature Coefficient (MTC) estimate due to the presence of feedback. Up to now the non-parametric estimation of the Frequency Response Function (FRF) is the most commonly used method to estimate the MTC by noise analysis. This estimation method is proportional to the Cross Power Spectral Density between the total neutron flux variation and total temperature variation divided by the auto power spectral density of the total temperature variation. The estimation method is very popular since feedback is considered to be negligible in the frequency band of interest. Unfortunately this is not the case in practice. Measurements at a Nuclear Power Plant in Belgium will be used to confirm that this feedback cannot be neglected. In case of feedback the chosen estimator always results in a biased estimate when there are external neutron flux variations present. It will be seen that the ratio between the external neutron flux and external temperature variation in combination with the amplitude of the feedback determines the bias. The theoretical analysis of the bias is based on a simplified scheme of the MTC measurement setup. A simulation in MATLAB is used to confirm the theoretical results. In order to avoid a biased estimate due to the feedback we will advise to measure the external temperature variation and to use another non-parametric estimator.
机译:本文讨论了由于存在反馈而导致的非参数主持人温度系数(MTC)估计的偏差。到目前为止,频率响应函数(FRF)的非参数估计是通过噪声分析估计MTC的最常用方法。这种估算方法与总中子通量变化和总温度变化之间的交叉功率谱密度除以总温度变化的自功率谱密度成正比。估计方法非常流行,因为在感兴趣的频带中反馈被认为是微不足道的。不幸的是,实际情况并非如此。将使用比利时核电厂的测量结果来确认该反馈不可忽略。在反馈的情况下,当存在外部中子通量变化时,所选择的估计器总是导致偏差估计。可以看出,外部中子通量和外部温度变化之间的比率与反馈的幅度共同决定了偏差。偏差的理论分析基于MTC测量设置的简化方案。使用MATLAB中的仿真来确认理论结果。为了避免由于反馈造成的估计偏差,我们建议您测量外部温度变化并使用其他非参数估计器。

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