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TDLAS/WMS Embedded System for Oxygen Concentration Detection of Glass Vials with Variational Mode Decomposition

机译:TDLAS / WMS嵌入式系统用于玻璃小瓶的氧浓度检测,具有变分模式分解

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摘要

Whether the oxygen content for medical glass vials can be measured accurately affects greatly the ingredient stability of sterile pharmaceuticals. Tunable diode laser absorption spectroscopy (TDLAS/WMS) based on wavelength modulation has the remarkable advantages of non-contact, low cost, high sensitivity, real-time response, which shows great potential in the field of in-site oxygen concentration detection. Due to the short optical path and various environmental disturbances, it is challenging to measure the headspace oxygen concentration in open-path optical environment. Targeting this challenge, this paper designs a TDLAS/WMS-based gas concentration sensing architecture and turns it into an embedded detection system. Then, a robust signal reconstruction method based on variational mode decomposition (VMD) is established to suppress the random noise of the demodulated harmonic signal. Hence, the oxygen concentration can be reliably inversed from the peak-to-peak values (Vp-p) of the 2ndharmonic signal. This detection framework is abbreviated as WMS+VDM+Vp-p. Encouragingly, the preliminary application on a glass vial encapsulation line demonstrate that the proposed method performs promising results with an absolute detection error of within ±1.5% and a minimal Allan deviation of 0.0010@(100s), which provides a good start for the on-site headspace oxygen concentration measurement for pharmaceutical glass vials.
机译:可以精确地测量医用玻璃小瓶的氧含量大大影响无菌药物的成分稳定性。基于波长调制的可调谐二极管激光吸收光谱(TDLAS / WMS)具有非接触,低成本,高灵敏度,实时响应的显着优势,这在现场氧气浓度检测领域显示出很大的潜力。由于光路和各种环境干扰短,因此挑战了开放式光学环境中的顶空氧浓度。针对这一挑战,本文设计了一种基于TDLA / WMS的气体浓度传感架构,并将其转换为嵌入式检测系统。然后,建立基于变分模式分解(VMD)的鲁棒信号重建方法来抑制解调谐波信号的随机噪声。因此,氧浓度可以从2NDHArmonic信号的峰 - 峰值(VP-P)可靠地逆转。该检测框架缩写为WMS + VDM + VP-P。令人鼓舞的是,在玻璃瓶封装线上的初步应用表明,该方法的有希望的结果在±1.5%内的绝对检测误差和0.0010 @(100s)的最小allan偏差,这为ON提供了良好的开端用于药物玻璃瓶的网站顶空氧浓度测量。

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