Zhang Wanjin, Lu Ping, Qu Zhiyuan, Zhang Jiangshan, Liu Deming
Opt Lett. 2022 May 15;47(10):2406-2409. doi: 10.1364/OL.460132.
In this Letter, we report a four-wavelength quadrature phase demodulation technique for extrinsic Fabry-Perot interferometric (EFPI) sensors and dynamic signals. Four interferometric signals are obtained from four different laser wavelengths. A wavelength interval of four wavelengths is chosen according to the free spectrum range (FSR) of EFPI sensors to generate two groups of anti-phase signals and two groups of orthogonal signals. The linear fitting (LF) method is applied to two groups of anti-phase signals to eliminate the dc component and ac amplitude to obtain two normalized orthogonal signals. The differential cross multiplication (DCM) method is then used to demodulate the phase signal from these two normalized orthogonal signals. The proposed LF and DCM (LF-DCM) based four-wavelength quadrature phase demodulation overcomes the drawback of the traditional ellipse fitting (EF) and DCM (EF-DCM) based dual-wavelength demodulation method that it is not suitable for weak signal demodulation since the ellipse degenerates into a straight line, which makes the EF algorithm invalid. Moreover, it also avoids the assumption that the dc component and ac amplitude of interferometric signals are identical, which is widely used in three-wavelength demodulation. An EFPI acoustic sensor is tested to prove the four-wavelength quadrature phase demodulation and experimental results show that the proposed phase demodulation method shows advantages of large dynamic range and wide frequency band. Linearity is as high as 0.9999 and a high signal-to-noise ratio (SNR) is observed from 1 Hz to 100 kHz.
在本信函中,我们报道了一种用于外腔法布里-珀罗干涉(EFPI)传感器及动态信号的四波长正交相位解调技术。从四个不同的激光波长获得四个干涉信号。根据EFPI传感器的自由光谱范围(FSR)选择四个波长的波长间隔,以生成两组反相信号和两组正交信号。对两组反相信号应用线性拟合(LF)方法,以消除直流分量和交流幅度,从而获得两个归一化的正交信号。然后使用差分交叉乘法(DCM)方法从这两个归一化的正交信号中解调相位信号。所提出的基于LF和DCM(LF-DCM)的四波长正交相位解调克服了传统的基于椭圆拟合(EF)和DCM(EF-DCM)的双波长解调方法的缺点,即由于椭圆退化为直线,使得EF算法无效,该方法不适用于弱信号解调。此外,它还避免了干涉信号的直流分量和交流幅度相同这一假设,而这一假设在三波长解调中被广泛使用。对一个EFPI声学传感器进行了测试,以验证四波长正交相位解调,实验结果表明,所提出的相位解调方法具有动态范围大、频带宽的优点。线性度高达0.9999,并且在1Hz至100kHz范围内观察到了高信噪比(SNR)。