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Calculation of signal-to-noise ratio (SNR) of infrared detection system based on MODTRAN Model

机译:基于MODTRAN模型的红外探测系统信噪比(SNR)的计算

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Signal-to-noise ratio (SNR) is an important parameter of infrared detection system. SNR of infrared detection system is determined by the target infrared radiation, atmospheric transmittance, background infrared radiation and the detector noise. The infrared radiation flux in the atmosphere is determined by the selective absorption of the gas molecules, the atmospheric environment, and the transmission distance of the radiation, etc, so the atmospheric transmittance and infrared radiance flux are intricate parameters. A radiometric model for the calculation of SNR of infrared detection system is developed and used to evaluate the effects of various parameters on signal-to-noise ratio (SNR). An atmospheric modeling tool, MODTRAN, is used to model wavelength-dependent atmospheric transmission and sky background radiance. Then a new expression of SNR is deduced. Instead of using constants such as average atmospheric transmission and average wavelength in traditional method, it uses discrete values for atmospheric transmission and sky background radiance. The integrals in general expression of SNR are converted to summations. The accuracy of SNR obtained from the new method can be improved. By adopting atmospheric condition of the 1976 US standard, no clouds urban aerosols, fall-winter aerosol profiles, the typical spectrum characters of sky background radiance and transmittance are computed by MODTRON. Then the operating ranges corresponding to the threshold quantity of SNR are calculated with the new method. The calculated operating ranges are more close to the measured operating range than those calculated with the traditional method.
机译:信噪比(SNR)是红外探测系统的重要参数。红外探测系统的信噪比由目标红外辐射,大气透射率,背景红外辐射和探测器噪声确定。大气中的红外辐射通量取决于气体分子的选择性吸收,大气环境和辐射的传输距离等,因此大气透射率和红外辐射通量是复杂的参数。建立了用于红外探测系统信噪比计算的辐射模型,并将其用于评估各种参数对信噪比(SNR)的影响。大气建模工具MODTRAN用于对依赖于波长的大气传输和天空背景辐射进行建模。然后推导了SNR的新表达式。代替传统方法中使用诸如平均大气透射率和平均波长之类的常数,它使用离散值表示大气透射率和天空背景辐射率。 SNR的一般表达式中的积分被转换为总和。可以提高从新方法获得的SNR的准确性。通过采用1976年美国标准的大气条件,没有雾气的城市气溶胶,秋冬气溶胶剖面,利用MODTRON计算了天空背景辐射和透射率的典型光谱特征。然后用新方法计算出与SNR阈值量相对应的工作范围。计算出的工作范围比用传统方法计算出的工作范围更接近测得的工作范围。

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