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Wide band energy analysis of fluidized bed pressure fluctuation signals using a frequency division method

机译:用分频法分析流化床压力波动信号的宽带能量

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摘要

A statistical method based on approximation of the cumulative energy distribution by Student's t-distribution is proposed for the unbiased frequency domain division. The proposed method fixes the number of samples needed to estimate the power spectrum and its corresponding cumulative energy distribution using the Kolmogorov&-Smirnov test. The reliability of the method to divide the frequency domain was shown for different fluidization velocities by changing the bed aspect ratio and using different pressure probes. Water-induced defluidization tests were conducted to illustrate the use of wide band energy as a monitoring tool. The Student's t-distribution results are compared with an analysis performed using the traditional visual inspection method. The energy of the power spectrum contained within the frequency regions obtained by the visual method is not able to detect changes in the bed aspect ratio or the start of the rotating distributor. No meaningful differences could be observed in the frequency regions using different quality pressure sensors because the approach using Student's t-distribution focuses on the sharp energy increase produced by the primary frequencies of the power spectrum. The sensitivity exhibited by the proposed frequency division approach for the range of fluidization conditions tested improves the use of the energy contained in these regions as a diagnostic tool in fluidized bed processes.
机译:针对无偏频域划分,提出了一种基于学生t分布近似累积能量分布的统计方法。所提出的方法使用Kolmogorov&-Smirnov检验来确定估计功率谱及其相应的累积能量分布所需的样本数量。通过改变床的长宽比和使用不同的压力探头,表明了在不同流化速度下划分频域的方法的可靠性。进行了水诱导的除流测试,以说明使用宽带能量作为监测工具。将学生的t分布结果与使用传统外观检查方法进行的分析进行比较。通过视觉方法获得的频率区域中包含的功率谱的能量不能检测床长宽比的变化或旋转分配器的开始。使用不同质量的压力传感器无法在频率区域中观察到有意义的差异,因为使用学生t分布的方法着重于功率谱的主频率产生的急剧能量增加。提议的分频方法对流化条件范围的测试显示出的灵敏度提高了在这些区域中包含的能量作为流化床工艺诊断工具的利用。

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