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Laser Methane Sensor with the Function of Self-Diagnose

机译:具有自诊断功能的激光甲烷传感器

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Using the technology of tunable diode laser absorption spectroscopy and the technology of micro-electronics, a fiber laser methane sensor based on the microprocessor C8051F410 is given. In this paper, we use the DFB Laser as the light source of the sensor. By tuning temperature and driver current of the DFB laser, we can scan the laser over the methane absorption line, Based on the Beer-Lambert law, through detect the variation of the light power before and after the absorption we realize the methane detection. It makes the real-time and online detection of methane concentration to be true, and it has the advantages just as high accuracy, immunity to other gases ,long calibration cycle and so on. The sensor has the function of adaptive gain and self-diagnose. By introducing digital potentiometers, the gain of the photo-electric conversion operational amplifier can be controlled by the microprocessor according to the light power. When the gain and the conversion voltage achieve the set value, then we can consider the sensor in a fault status, and then the software will alarm us to check the status of the probe. In addition, we introduce the feedback of the temperature to compensate the environment effects, So we improved the dependence and the stability of the measured results. At last we give some analysis on the sensor according the field application and according the present working, we have a look of our next work in the distance.
机译:利用可调谐二极管激光吸收光谱技术和微电子技术,给出了基于微处理器C8051F410的光纤激光甲烷传感器。在本文中,我们使用DFB激光作为传感器的光源。通过调节DFB激光器的温度和驱动电流,我们可以在甲烷吸收线上扫描激光器,基于比尔-朗伯定律,通过检测吸收前后的光功率变化,可以实现甲烷检测。它使甲烷浓度的实时在线检测成为现实,具有精度高,对其他气体的抵抗力强,校正周期长等优点。传感器具有自适应增益和自我诊断功能。通过引入数字电位器,微处理器可以根据光功率来控制光电转换运算放大器的增益。当增益和转换电压达到设定值时,我们可以认为传感器处于故障状态,然后软件会警告我们检查探头的状态。另外,我们引入了温度反馈来补偿环境影响,因此我们改善了测量结果的依赖性和稳定性。最后,我们根据现场应用对传感器进行了分析,并根据目前的工作情况,对远距离的下一步工作进行了展望。

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