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A linear temperature extraction method from Voigt lineshape profile in laser absorption spectroscopy

机译:激光吸收光谱中Voigt Linehape谱的线性温度提取方法

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Monitoring of combustion parameters, especially temperature and gas concentration in the flames is essential to improve the combustion efficiency and reduce pollutant exhausts. A linear temperature extraction method was proposed in this work from the laser absorption profile. It was derived from the solution of a variable coefficient differential equation. The equation holds in case of gas species distributed homogeneously in the laser path and serves as an indicator for average temperature even it is heterogeneously distributed along the path. Only one absorption spectrum was required in the proposed method to extract the value of temperature along the path, and this simplified the applications of the laser absorption spectroscopy techniques, where two different absorption spectra are required as usually to carry out the typical dual line method. Noisy data were used to verify the feasibility of the proposed method and the error of linear temperature extraction was below 20K for temperature from 300K to 1200K, if the signal-to-noise ratio (SNR) was above 60dB. Also, the nonlinear fitting method was carried out and compared with the proposed method. It showed that the proposed method yielded temperature values with slightly larger deviations in case of noisy data but took much shorter calculation time. The proposed linear temperature extraction method is more feasible in hardware implementation for real-time temperature readings.
机译:监测燃烧参数,特别是火焰中的温度和气体浓度对于提高燃烧效率并减少污染物排气至关重要。在激光吸收分布中提出了一种线性温度提取方法。它来自可变系数微分方程的解。在激光路径中均匀分布的气体物质的情况下,等式保持作为平均温度的指示剂,即使它沿着路径是异构的。在所提出的方法中仅需要一个吸收光谱来沿着路径提取温度值,并且这简化了激光吸收光谱技术的应用,其中需要两种不同的吸收光谱,通常以执行典型的双线方法。噪声数据用于验证所提出的方法的可行性,如果信噪比(SNR)高于60dB,则线性温度提取的误差低于30k至1200k。而且,与所提出的方法进行了非线性装配方法。结果表明,在噪声数据的情况下,所提出的方法产生温度值,略微较大,但计算时间更短。建议的线性温度提取方法在实时温度读数的硬件实现中更加可行。

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