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In-Line Monitoring and Control of Rheological Properties through Data-Driven Ultrasound Soft-Sensors

机译:通过数据驱动的超声波软传感器在线监测和控制流变性能

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摘要

The use of continuous processing is replacing batch modes because of their capabilities to address issues of agility, flexibility, cost, and robustness. Continuous processes can be operated at more extreme conditions, resulting in higher speed and efficiency. The issue when using a continuous process is to maintain the satisfaction of quality indices even in the presence of perturbations. For this reason, it is important to evaluate in-line key performance indicators. Rheology is a critical parameter when dealing with the production of complex fluids obtained by mixing and filling. In this work, a tomographic ultrasonic velocity meter is applied to obtain the rheological curve of a non-Newtonian fluid. Raw ultrasound signals are processed using a data-driven approach based on principal component analysis (PCA) and feedforward neural networks (FNN). The obtained sensor has been associated with a data-driven decision support system for conducting the process.
机译:由于连续处理能够解决敏捷性,灵活性,成本和鲁棒性问题,因此使用连续处理替代了批处理模式。连续过程可以在更极端的条件下运行,从而提高了速度和效率。使用连续过程时的问题是即使在出现干扰的情况下也要保持质量指标的满意度。因此,评估在线关键绩效指标很重要。当处理通过混合和填充获得的复杂流体时,流变学是一个关键参数。在这项工作中,使用层析X射线速度计来获得非牛顿流体的流变曲线。使用基于主成分分析(PCA)和前馈神经网络(FNN)的数据驱动方法来处理原始超声信号。获得的传感器已与数据驱动的决策支持系统相关联,以进行该过程。

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