Jin W
Department of Electrical Engineering, The Hong Kong Polytechnic University, Hung Hom, Kowloon, Hong Kong, China.
Appl Opt. 1999 Sep 1;38(25):5290-7. doi: 10.1364/ao.38.005290.
The results of an investigation of the performance of a time-division-addressed fiber-optic gas-sensor array by means of wavelength modulation of a distributed-feedback (DFB) laser are reported. The system performance is found to be severely limited by the extinction ratio of the optical switch used for pulse amplitude modulation. Formulas that relate the cross-talk level to the extinction ratio of the switch, the modulation parameters of the DFB laser, and the optical path differences among sensing channels are derived. Computer simulation shows that an array of 20 methane gas sensors with a detection sensitivity of 2000 parts in 10(6) (ppm) (10-cm gas cell) for each sensor may be realized with a commercially available single Mach-Zehnder amplitude modulator (-35-dB extinction ratio). An array of 100 sensors with a 100-ppm detection sensitivity for each sensor may be realized if a double Mach-Zehnder amplitude modulator is used.
报道了通过分布反馈(DFB)激光器的波长调制对时分寻址光纤气体传感器阵列性能进行研究的结果。发现系统性能受到用于脉冲幅度调制的光开关消光比的严重限制。推导了将串扰水平与开关消光比、DFB激光器的调制参数以及传感通道之间的光程差相关联的公式。计算机模拟表明,使用市售的单个马赫曾德尔幅度调制器(消光比为-35 dB)可实现由20个甲烷气体传感器组成的阵列,每个传感器的检测灵敏度为百万分之2000(ppm)(10厘米气室)。如果使用双马赫曾德尔幅度调制器,则可实现由100个传感器组成的阵列,每个传感器的检测灵敏度为100 ppm。