Improvement of submillimeter spectrometric measurement via deconvolution

C. Damian, D. Coltuc, F. Garoi, M. Datcu
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Abstract

Spectrometry at submillimeter wavelengths (terahertz frequency range) is a promising field of applications but one which presents significant difficulties. The sources at these domains have generally low power, the measurements are noisy and the resolution of the measured spectra is limited by diffraction. We propose a method to improve the spectral resolution in Hadamard spectroscopy for the submillimeter spectral region. The method involves oversampling the spectrum using multiple shifted acquisitions and deconvolution. In order to find the most appropriate deconvolution method, several known algorithms are evaluated. They are: the Lucy-Richardson algorithm, the Maximum Entropy Method (MEM) and the Wiener filter. MEM proved to be the best one. It outperforms the other tested methods by a percentage over 16%.
基于反褶积的亚毫米光谱测量改进
亚毫米波(太赫兹频率范围)光谱法是一个很有前途的应用领域,但也存在很大的困难。这些区域的光源一般功率较低,测量结果有噪声,测量光谱的分辨率受衍射的限制。提出了一种提高亚毫米波段阿达玛尔光谱分辨率的方法。该方法涉及使用多重移位采集和反褶积对频谱进行过采样。为了找到最合适的反卷积方法,对几种已知的算法进行了评价。它们是:Lucy-Richardson算法、最大熵法(MEM)和维纳滤波器。MEM被证明是最好的。它比其他测试方法的性能高出16%以上。
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