传感器与微系统
傳感器與微繫統
전감기여미계통
TRANSDUCER AND MICROSYSTEM TECHNOLOGY
2015年
2期
157-160
,共4页
气体传感器%特性曲线%曲线拟合%气体检测
氣體傳感器%特性麯線%麯線擬閤%氣體檢測
기체전감기%특성곡선%곡선의합%기체검측
gas sensor%characteristic curve%curve fitting%gas detection
针对传统半导体气敏检测器电阻直接定量算法误差大、适应性差的问题,利用半导体传感器电导率随气体体积分数变化而变化的特点,提出了新的电路模型。通过对其特性曲线进行深入分析,构建了检测电路输出信号与气体体积分数之间的分段幂函数模型。先通过对不同体积分数气体进行采样,将采样气体体积分数和电路输出信号进行分段幂函数模型拟合,然后用拟合参数去计算未知检测气体的体积分数。实验结果表明:提出的定量模型大大提高了定量分析的准确性,且定量误差不受传感器漂移的影响,具有很强的环境适用性,提高了微量可燃气检测的可靠性和精度。
針對傳統半導體氣敏檢測器電阻直接定量算法誤差大、適應性差的問題,利用半導體傳感器電導率隨氣體體積分數變化而變化的特點,提齣瞭新的電路模型。通過對其特性麯線進行深入分析,構建瞭檢測電路輸齣信號與氣體體積分數之間的分段冪函數模型。先通過對不同體積分數氣體進行採樣,將採樣氣體體積分數和電路輸齣信號進行分段冪函數模型擬閤,然後用擬閤參數去計算未知檢測氣體的體積分數。實驗結果錶明:提齣的定量模型大大提高瞭定量分析的準確性,且定量誤差不受傳感器漂移的影響,具有很彊的環境適用性,提高瞭微量可燃氣檢測的可靠性和精度。
침대전통반도체기민검측기전조직접정량산법오차대、괄응성차적문제,이용반도체전감기전도솔수기체체적분수변화이변화적특점,제출료신적전로모형。통과대기특성곡선진행심입분석,구건료검측전로수출신호여기체체적분수지간적분단멱함수모형。선통과대불동체적분수기체진행채양,장채양기체체적분수화전로수출신호진행분단멱함수모형의합,연후용의합삼수거계산미지검측기체적체적분수。실험결과표명:제출적정량모형대대제고료정량분석적준학성,차정량오차불수전감기표이적영향,구유흔강적배경괄용성,제고료미량가연기검측적가고성화정도。
Aiming at problem of directly quantitative algorithm of semiconductor gas sensitive detector resistance owns the disadvantages of great error and poor adaptability,and using the characteristics that the conductivity of semiconductor varies with gas volume fraction,a new circuit model is proposed. A piecewise power function model between output signal of detection circuit and the gas volume fraction is constructed based on the deep analysis of the characteristic curve. To start with,sample the different volume fraction of gas and piecewise power function model fit the sampling gas volume fraction and output signal of the circuit. Then,use the fitting parameters to calculate the volume fraction of unknown detected gas. Experimental results show that veracity of quantitative analysis is greatly enhanced by using the proposed quantitative model. Moreover,quantitative error is unaffected by the drift of sensor. The proposed model owns a strong environmental suitability and the reliability and precision of the detection of trace gas are enhanced.