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Quantitative Assessment With Improved Fast Fourier Transform Based Method By Signal Mirroring

机译:基于改进快速傅里叶变换的信号镜像定量评估

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摘要

The comparison of calculated results to experimental measurements is very important for thermal-hydraulic code qualification. Recently, it was observed that the fast Fourier transform based method (FFTBM) favors certain trends when an edge (difference) is present in the signal between the first and the last data point of the investigated time signal. Namely, the discrete Fourier transform used for the code accuracy calculation views the time domain signal as an infinite periodic signal. The purpose of the present study was therefore to improve the FFTBM regarding the unphysical edge impact. This was achieved by signal mirroring. In the demonstration it was shown how the improved FFTBM by signal mirroring works. Besides two case studies also the code accuracy of the LOFT L2-5 test calculations performed in the frame of the Best-Estimate Methods Uncertainty and Sensitivity Evaluation (BEMUSE) program was assessed. The results show that the improved FFTBM by signal mirroring judges the accuracy in a consistent and unbiased way.
机译:将计算结果与实验测量结果进行比较对于热工液压代码鉴定非常重要。最近,已经观察到,当所研究的时间信号的第一个和最后一个数据点之间的信号中存在边沿(差)时,基于快速傅立叶变换的方法(FFTBM)倾向于某些趋势。即,用于代码精度计算的离散傅里叶变换将时域信号视为无限周期信号。因此,本研究的目的是针对非物理边缘影响来改进FFTBM。这是通过信号镜像实现的。在演示中,展示了通过信号镜像改进的FFTBM是如何工作的。除了两个案例研究,还评估了在最佳估计方法不确定度和灵敏度评估(BEMUSE)程序框架中执行的LOFT L2-5测试计算的代码准确性。结果表明,通过信号镜像改进的FFTBM以一致且无偏的方式判断准确性。

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