Chi Xingqiang, Wang Xiangjun, Ke Xuan
College of Electrical Engineering, Naval University of Engineering, Wuhan 430033, China.
School of Mechanical and Electrical Engineering, Wuhan Polytechnic, Wuhan 430074, China.
Micromachines (Basel). 2022 Apr 17;13(4):633. doi: 10.3390/mi13040633.
This work reports an optical fiber-based continuous liquid level sensor for cryogenic propellant mass gauging, which has significant advantages over the existing liquid level sensors in terms of accuracy, simplicity, and reliability. Based on Rayleigh backscattering coherent optical frequency domain reflectometry, every point of the sensing fiber is a liquid sensor which is able to distinguish liquid and vapor. We obtained a measurement accuracy of 1 mm for the optical fiber sensor by measuring both liquid nitrogen and water levels. For the first time, for practical applications, we experimentally studied the influence of ambient temperature and strain changes on the sensing performance as well as the repeatability of the optical fiber-based liquid level sensor's measurements.
这项工作报道了一种用于低温推进剂质量测量的基于光纤的连续液位传感器,该传感器在准确性、简易性和可靠性方面比现有的液位传感器具有显著优势。基于瑞利背向散射相干光频域反射测量法,传感光纤的每个点都是一个能够区分液体和蒸汽的液体传感器。通过测量液氮和水位,我们获得了光纤传感器1毫米的测量精度。首次针对实际应用,我们通过实验研究了环境温度和应变变化对传感性能的影响以及基于光纤的液位传感器测量的重复性。