Analysis and Design of an Effective Light Interference Methane Sensor Based on Three-Dimensional Optical Path Model
As an important environmental monitoring equipment, the existing methane sensors or the traditional interferometer-based methane detectors have some drawbacks, such as low accuracy, large size, and complex calibration operations. Moreover, the optical path model and analysis method for the light int...
Main Authors: | , , , , |
---|---|
Format: | Article |
Language: | English |
Published: |
Hindawi Limited
2018-01-01
|
Series: | Journal of Sensors |
Online Access: | http://dx.doi.org/10.1155/2018/1342593 |
id |
doaj-29dc12e3cc724b69a80c279ffb8116a2 |
---|---|
record_format |
Article |
spelling |
doaj-29dc12e3cc724b69a80c279ffb8116a22020-11-25T00:03:31ZengHindawi LimitedJournal of Sensors1687-725X1687-72682018-01-01201810.1155/2018/13425931342593Analysis and Design of an Effective Light Interference Methane Sensor Based on Three-Dimensional Optical Path ModelTeng Long0En Li1Lei Yang2Junfeng Fan3Zize Liang4The State Key Laboratory of Management and Control for Complex Systems, Institute of Automation, Chinese Academy of Sciences, 95 Zhongguancun East Road, Beijing 100190, ChinaThe State Key Laboratory of Management and Control for Complex Systems, Institute of Automation, Chinese Academy of Sciences, 95 Zhongguancun East Road, Beijing 100190, ChinaThe State Key Laboratory of Management and Control for Complex Systems, Institute of Automation, Chinese Academy of Sciences, 95 Zhongguancun East Road, Beijing 100190, ChinaThe State Key Laboratory of Management and Control for Complex Systems, Institute of Automation, Chinese Academy of Sciences, 95 Zhongguancun East Road, Beijing 100190, ChinaThe State Key Laboratory of Management and Control for Complex Systems, Institute of Automation, Chinese Academy of Sciences, 95 Zhongguancun East Road, Beijing 100190, ChinaAs an important environmental monitoring equipment, the existing methane sensors or the traditional interferometer-based methane detectors have some drawbacks, such as low accuracy, large size, and complex calibration operations. Moreover, the optical path model and analysis method for the light interference methane sensor are not practical. In this paper, an effective light interference methane sensor is proposed based on a three-dimensional optical path model with point light source. Based on this model, the interference optical system is studied to illustrate the cause of the interference fringes. Furthermore, the influencing factors of the light intensity distribution are analyzed and an adjustment method for the interference fringes is proposed, which helps to simplify the assembling and calibrating operations. In order to improve the measurement accuracy, a temperature drift compensation method which includes a mapping table, a steady-state compensator, and a dynamic compensator is proposed. The mapping table is established between the output voltages of photoelectric detector, and the methane concentration, the steady-state compensator, and the dynamic compensator are proposed to eliminate the temperature drift. Finally, an experimental device for the light interference methane sensor is constructed to validate the interference fringe adjustment method and the temperature drift compensation method.http://dx.doi.org/10.1155/2018/1342593 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Teng Long En Li Lei Yang Junfeng Fan Zize Liang |
spellingShingle |
Teng Long En Li Lei Yang Junfeng Fan Zize Liang Analysis and Design of an Effective Light Interference Methane Sensor Based on Three-Dimensional Optical Path Model Journal of Sensors |
author_facet |
Teng Long En Li Lei Yang Junfeng Fan Zize Liang |
author_sort |
Teng Long |
title |
Analysis and Design of an Effective Light Interference Methane Sensor Based on Three-Dimensional Optical Path Model |
title_short |
Analysis and Design of an Effective Light Interference Methane Sensor Based on Three-Dimensional Optical Path Model |
title_full |
Analysis and Design of an Effective Light Interference Methane Sensor Based on Three-Dimensional Optical Path Model |
title_fullStr |
Analysis and Design of an Effective Light Interference Methane Sensor Based on Three-Dimensional Optical Path Model |
title_full_unstemmed |
Analysis and Design of an Effective Light Interference Methane Sensor Based on Three-Dimensional Optical Path Model |
title_sort |
analysis and design of an effective light interference methane sensor based on three-dimensional optical path model |
publisher |
Hindawi Limited |
series |
Journal of Sensors |
issn |
1687-725X 1687-7268 |
publishDate |
2018-01-01 |
description |
As an important environmental monitoring equipment, the existing methane sensors or the traditional interferometer-based methane detectors have some drawbacks, such as low accuracy, large size, and complex calibration operations. Moreover, the optical path model and analysis method for the light interference methane sensor are not practical. In this paper, an effective light interference methane sensor is proposed based on a three-dimensional optical path model with point light source. Based on this model, the interference optical system is studied to illustrate the cause of the interference fringes. Furthermore, the influencing factors of the light intensity distribution are analyzed and an adjustment method for the interference fringes is proposed, which helps to simplify the assembling and calibrating operations. In order to improve the measurement accuracy, a temperature drift compensation method which includes a mapping table, a steady-state compensator, and a dynamic compensator is proposed. The mapping table is established between the output voltages of photoelectric detector, and the methane concentration, the steady-state compensator, and the dynamic compensator are proposed to eliminate the temperature drift. Finally, an experimental device for the light interference methane sensor is constructed to validate the interference fringe adjustment method and the temperature drift compensation method. |
url |
http://dx.doi.org/10.1155/2018/1342593 |
work_keys_str_mv |
AT tenglong analysisanddesignofaneffectivelightinterferencemethanesensorbasedonthreedimensionalopticalpathmodel AT enli analysisanddesignofaneffectivelightinterferencemethanesensorbasedonthreedimensionalopticalpathmodel AT leiyang analysisanddesignofaneffectivelightinterferencemethanesensorbasedonthreedimensionalopticalpathmodel AT junfengfan analysisanddesignofaneffectivelightinterferencemethanesensorbasedonthreedimensionalopticalpathmodel AT zizeliang analysisanddesignofaneffectivelightinterferencemethanesensorbasedonthreedimensionalopticalpathmodel |
_version_ |
1725433511483015168 |