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A two-laser beam technique for improving the sensitivity of low frequency open path tunable diode laser absorption spectrometer (OP-TDLAS) measurements

机译:一种改进低频开放式可调二极管激光吸收光谱仪(OP-TDLA)测量的双激光束技术

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Open path tunable diode-laser absorption spectroscopy (OP-TDLAS) is a promising technique to detect low concentrations of possible biogenic gases on Mars. This technique finds the concentration of a gas by measuring the amount of laser light absorbed by gaseous molecules at a specific wavelength. One of the major factors limiting sensitivity in the TDLAS systems operating at low modulation frequencies is 1/f noise. 1/f noise is minimized in many spectroscopy systems by the use of high frequency modulation techniques. However, these techniques require complex instruments that include reference cells and other devices for calibration, making them relatively large and bulky. We are developing a spectroscopy system for space applications that requires small, low mass and low power instrumentation, making the high frequency techniques unsuitable. This paper explores a new technique using two-laser beam to reduce the affect of 1/f noise and increase the signal strength for measurements made at lower frequencies. The two lasers are excited at slightly different frequencies. An algorithm is used to estimate the noise in the second harmonic from the combined spectra of both lasers. This noise is subtracted from the signal to give a more accurate measurement of gas concentration. The error in estimation of 1/f noise is negligible as it corresponds to noise level made at much higher frequencies. Simulation results using ammonia gas and two lasers operating at 500 and 510 Hz respectively shows that this technique is able to decrease the error in estimation of gas concentration to 1/6 its normal value.
机译:开放式可调谐二极管 - 激光吸收光谱(OP-TDLA)是一种有希望的方法,用于检测火星上的低浓度可能的生物气体。该技术通过测量特定波长在特定波长的气态分子吸收的激光量来找到气体的浓度。限制在低调制频率下运行的TDLAS系统中灵敏度的主要因素之一是1 / f噪声。通过使用高频调制技术,在许多光谱系统中最小化1 / F噪声。然而,这些技术需要复杂的仪器,包括参考电池和用于校准的其他设备,使它们相对较大,笨重。我们正在开发一种用于空间应用的光谱系统,需要小,低质量和低功率仪表,使得高频技术不适合。本文探讨了使用双激光束的新技术,以减少1 / F噪声的影响,并增加在较低频率下测量的信号强度。两个激光频率略微不同。一种算法用于从两个激光器的组合光谱估计第二次谐波中的噪声。从信号中减去该噪声以提供更准确的气体浓度测量。估计1 / f噪声的误差可以忽略不计,因为它对应于在更高的频率下进行的噪声水平。使用氨气的仿真结果分别以500和510Hz运行的两个激光器分别表明,该技术能够将气体浓度的估计值降低至1/6其正常值。

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