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Restoration of particle size distributions from fiber-optical in-line measurements in fluidized bed processes

机译:通过流化床过程中的光纤在线测量恢复粒度分布

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An in-line probe for the measurement of chord length distributions was employed in fluidized bed granulation processes to investigate the growth behavior and the influence of process parameters. The application of a transformation approach of chord lengths into particles sizes enabled the real-time detection of the evolving particle size distribution, which is a presupposition for the integration into process control systems. Due to the ill-conditioned nature of the transformation algorithm several concepts for noise reduction and stability preservation were investigated and revealed significant synergetic effects for the combination of filtering techniques with discretization parameters. In order to meet the fluctuating, process dependent SNR-levels of the chord length distribution measured by the probe the filtering approaches were required to be self-regulating. Featuring a dynamic noise reduction the power spectral density aided sliding discrete Fourier transform produced the most adequate filtering results.
机译:在流化床造粒过程中使用在线探针测量弦长分布,以研究生长行为和工艺参数的影响。将弦长转换成颗粒大小的转换方法的应用使得能够实时检测不断变化的颗粒大小分布,这是集成到过程控制系统中的前提。由于变换算法的条件恶劣,研究了一些降低噪声和保持稳定性的概念,并揭示了将滤波技术与离散化参数结合使用的显着协同效应。为了满足由探头测量的弦长分布的过程相关的SNR级别的波动,要求滤波方法是自调节的。具有动态降噪功能,功率谱密度辅助滑动离散傅立叶变换产生了最充分的滤波结果。

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