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Error-free phase correction of interferograms using digital all-pass filters

机译:使用数字全通滤波器的干扰图无差错阶段校正

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摘要

We present a novel method for the phase correction of FT-IR interferograms that can produce spectra free of photometric errors.It is based on the design and application of an all-pass digital filter whose phase response is the opposite to that of the interferogram.After filtering,the interferogram becomes nearly (or completely,depending on the computational effort) phase-error-free and subsequent Fourier transforming yields accurate spectra.To virtually eliminate any photometric error,this method can be followed up by the Mertz method,which given that the filtered interferogram is nearly symmetric,will generate no errors.Without the filtering,Mertz method was shown to introduce photometric error in FT-IR spectra.When stored filter coefficients are used,this method is orders of magnitude faster than the Mertz method,while still keeping the photometric error within acceptable levels.This advantage of the method could be used,for example,in hyper-spectral imaging applications where a large amount of spectra from infrared focal plane arrays needs to be collected and processed in (near) real time.The method can be easily implemented in DSP circuits.Examples of phase correction of double-sided interferograms using both the Mertz and the all-pass filter method were given and photometric accuracy compared.
机译:我们介绍了一种新的方法,用于逐步校正FT-IR干涉图,该方法可以产生没有光度误差的光谱。它基于所有阶段响应与干涉图的相反的全通量数字滤波器的设计和应用。过滤后,干涉图几乎(或完全,根据计算工作)相位误差和随后的傅里叶变换产生精确的光谱。要实际消除任何光度误差,可以通过给定的Mertz方法跟进这种方法滤波的干涉图几乎对称,不会产生任何错误。如果使用过滤器系数,则显示出滤波,Mertz方法在FT-IR光谱中引入光度误差。当使用存储的滤波器系数时,该方法比Mertz方法快,虽然仍然在可接受的级别内保持光度误差。该方法的优点可以例如在雷格的超光谱成像应用中使用从红外焦平面阵列中的e频谱的量需要在(接近)实时收集和处理。该方法可以在DSP电路中容易地实现。使用MERTZ和全频,双面干涉图的相位校正的视图比较滤波方法和光度准确度。

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