Fan Jie, Chen Xiao, Huang Qi-Feng, Zhou Yu, Chen Gang
Jiangsu Electric Power Company Research Institute, Nanjing 211103, China.
Guang Pu Xue Yu Guang Pu Fen Xi. 2013 Dec;33(12):3326-9.
In order to solve the problem of low accuracy and mutual interference in multi-component gas detection, a kind of multi-component gas detection network with high accuracy was designed. A semiconductor laser with narrow bandwidth was utilized as light source and a novel long-path gas cell was also used in this system. By taking the single sine signal to modulate the spectrum of laser and using space division multiplexing (SDM) and time division multiplexing (TDM) technique, the detection of multi-component gas was achieved. The experiments indicate that the linearity relevance coefficient is 0. 99 and the measurement relative error is less than 4%. The system dynamic response time is less than 15 s, by filling a volume of multi-component gas into the gas cell gradually. The system has advantages of high accuracy and quick response, which can be used in the fault gas on-line monitoring for power transformers in real time.
为解决多组分气体检测中精度低和相互干扰的问题,设计了一种高精度的多组分气体检测网络。采用窄带宽半导体激光器作为光源,该系统还使用了一种新型长程气室。通过采用单正弦信号调制激光光谱,并利用空分复用(SDM)和时分复用(TDM)技术,实现了多组分气体的检测。实验表明,线性相关系数为0.99,测量相对误差小于4%。通过向气室中逐渐充入一定体积的多组分气体,系统动态响应时间小于15 s。该系统具有精度高、响应快的优点,可用于电力变压器故障气体的实时在线监测。