School of Instrumentation and Optoelectronic Engineering, Beihang University, No. 37 Xueyuan Road, Haidian District, Beijing 100083, China.
Sensors (Basel). 2018 Dec 28;19(1):96. doi: 10.3390/s19010096.
A novel sensing peak identification method for high accuracy refractive index (RI) sensing is proposed. The implementation takes the intensity of interference maximum as the characteristic to distinguish interference peaks, tracking the sensing peak continually during a RI changes, with high measurement accuracy and simple computation. To verify the effect of the method, the extrinsic Fabry⁻Perot interferometer (EFPI) sensor has been fabricated using the large lateral offset splicing technique. In the RI range from 1.346 to 1.388, the measurement range of the EFPI with the proposed method reaches at least 6 times larger than that of EFPI with the wavelength tracking method and the largest measurement error is -4.47 × 10. The EFPI refractive index (RI) sensor identified the sensing peak is believed to play an important role in RI, concentration and density sensing, etc., for superior performance.
提出了一种新颖的传感峰识别方法,用于高精度折射率(RI)传感。该方法以干涉强度最大值为特征来区分干涉峰,在 RI 变化过程中连续跟踪传感峰,具有高精度和简单计算的特点。为了验证该方法的效果,使用大横向偏移拼接技术制作了外腔 Fabry-Perot 干涉仪(EFPI)传感器。在 RI 范围从 1.346 到 1.388 内,与波长跟踪方法相比,该方法的 EFPI 测量范围至少大 6 倍,最大测量误差为-4.47×10。用于 RI 传感的 EFPI 传感器识别传感峰的方法被认为在 RI、浓度和密度传感等方面具有优异的性能。