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SEALDH-II——一种用于野外和机载应用的自主、整体控制、基于第一原理的可调谐二极管激光吸收光谱湿度计:设计-设置-精度/稳定性应力测试

SEALDH-II-An Autonomous, Holistically Controlled, First Principles TDLAS Hygrometer for Field and Airborne Applications: Design-Setup-Accuracy/Stability Stress Test.

作者信息

Buchholz Bernhard, Kallweit Sören, Ebert Volker

机构信息

Physikalisch-Technische Bundesanstalt Braunschweig, Braunschweig 38114, Germany.

Physikalisch Chemisches Institut, Universität Heidelberg, Heidelberg 69120, Germany.

出版信息

Sensors (Basel). 2016 Dec 30;17(1):68. doi: 10.3390/s17010068.

Abstract

Instrument operation in harsh environments often significantly impacts the trust level of measurement data. While commercial instrument manufacturers clearly define the deployment conditions to achieve trustworthy data in typical standard applications, it is frequently unavoidable in scientific field applications to operate instruments outside these commercial standard application specifications. Scientific instrumentation, however, is employing cutting-edge technology and often highly optimized but also lacks long-term field tests to assess the field vs. laboratory performance. Recently, we developed the Selective Extractive Laser Diode Hygrometer (SEALDH-II), which addresses field and especially airborne applications as well as metrological laboratory validations. SEALDH-II targets reducing deviations between airborne hygrometers (currently up to 20% between the most advanced hygrometers) with a new holistic, internal control and validation concept, which guarantees the transfer of the laboratory performance into a field scenario by capturing more than 80 instrument internal "housekeeping" data to nearly perfectly control SEALDH-II's health status. SEALDH-II uses a calibration-free, first principles based, direct Tuneable Diode Laser Absorption Spectroscopy (dTDLAS) approach, to cover the entire atmospheric humidity measurement range from about 3 to 40,000 ppmv with a calculated maximum uncertainty of 4.3% ± 3 ppmv. This is achieved not only by innovations in internal instrument monitoring and design, but also by active control algorithms such as a high resolution spectral stabilization. This paper describes the setup, working principles, and instrument stabilization, as well as its precision validation and long-term stress tests in an environmental chamber over an environmental temperature and humidity range of ΔT = 50 K and ΔRH = 80% RH, respectively.

摘要

在恶劣环境中仪器操作常常会显著影响测量数据的可信度。虽然商业仪器制造商明确规定了在典型标准应用中获取可靠数据的部署条件,但在科学领域应用中,仪器在这些商业标准应用规范之外运行往往不可避免。然而,科学仪器采用了前沿技术且通常经过高度优化,但缺乏长期现场测试来评估现场与实验室性能。最近,我们开发了选择性萃取激光二极管湿度计(SEALDH-II),它适用于现场应用,特别是机载应用以及计量实验室验证。SEALDH-II旨在通过一种全新的整体内部控制和验证概念来减少机载湿度计之间的偏差(目前最先进的湿度计之间偏差高达20%),该概念通过捕获80多个仪器内部的“运行管理”数据来几乎完美地控制SEALDH-II的健康状态,从而保证将实验室性能转换到现场场景。SEALDH-II采用无校准、基于第一原理的直接可调谐二极管激光吸收光谱法(dTDLAS),以覆盖约3至40,000 ppmv的整个大气湿度测量范围,计算得出的最大不确定度为4.3%±3 ppmv。这不仅通过仪器内部监测和设计的创新来实现,还通过诸如高分辨率光谱稳定等主动控制算法来实现。本文描述了该仪器的设置、工作原理和稳定化,以及在环境试验箱中分别在ΔT = 50 K和ΔRH = 80% RH的环境温度和湿度范围内进行的精度验证和长期应力测试。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fcb5/5298641/ecc40ffe655c/sensors-17-00068-g001.jpg

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