Comput Methods Programs Biomed - Complex extreme learning machine applications in terahertz pulsed signals feature sets.

Tópicos

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Resumo

This paper presents a novel approach to the automatic classification of very large data sets composed of terahertz pulse transient signals, highlighting their potential use in biochemical, biomedical, pharmaceutical and security applications. Two different types of THz spectra are considered in the classification process. Firstly a binary classification study of poly-A and poly-C ribonucleic acid samples is performed. This is then contrasted with a difficult multi-class classification problem of spectra from six different powder samples that although have fairly indistinguishable features in the optical spectrum, they also possess a few discernable spectral features in the terahertz part of the spectrum. Classification is performed using a complex-valued extreme learning machine algorithm that takes into account features in both the amplitude as well as the phase of the recorded spectra. Classification speed and accuracy are contrasted with that achieved using a support vector machine classifier. The study systematically compares the classifier performance achieved after adopting different Gaussian kernels when separating amplitude and phase signatures. The two signatures are presented as feature vectors for both training and testing purposes. The study confirms the utility of complex-valued extreme learning machine algorithms for classification of the very large data sets generated with current terahertz imaging spectrometers. The classifier can take into consideration heterogeneous layers within an object as would be required within a tomographic setting and is sufficiently robust to detect patterns hidden inside noisy terahertz data sets. The proposed study opens up the opportunity for the establishment of complex-valued extreme learning machine algorithms as new chemometric tools that will assist the wider proliferation of terahertz sensing technology for chemical sensing, quality control, security screening and clinic diagnosis. Furthermore, the proposed algorithm should also be very useful in other applications requiring the classification of very large datasets.

Resumo Limpo

paper present novel approach automat classif larg data set compos terahertz puls transient signal highlight potenti use biochem biomed pharmaceut secur applic two differ type thz spectra consid classif process first binari classif studi polya polyc ribonucl acid sampl perform contrast difficult multiclass classif problem spectra six differ powder sampl although fair indistinguish featur optic spectrum also possess discern spectral featur terahertz part spectrum classif perform use complexvalu extrem learn machin algorithm take account featur amplitud well phase record spectra classif speed accuraci contrast achiev use support vector machin classifi studi systemat compar classifi perform achiev adopt differ gaussian kernel separ amplitud phase signatur two signatur present featur vector train test purpos studi confirm util complexvalu extrem learn machin algorithm classif larg data set generat current terahertz imag spectromet classifi can take consider heterogen layer within object requir within tomograph set suffici robust detect pattern hidden insid noisi terahertz data set propos studi open opportun establish complexvalu extrem learn machin algorithm new chemometr tool will assist wider prolifer terahertz sens technolog chemic sens qualiti control secur screen clinic diagnosi furthermor propos algorithm also use applic requir classif larg dataset

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