首页> 外文会议>IEEE National Aerospace and Electronics Conference >An Adaptive Technique for Automatic Region Detection and Extraction of FTIR Spectral Material Absorption for Mid-Wave Infrared Microsphere-Lens-Enhanced Type II Strained Layer Super-Lattice Photodetectors
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An Adaptive Technique for Automatic Region Detection and Extraction of FTIR Spectral Material Absorption for Mid-Wave Infrared Microsphere-Lens-Enhanced Type II Strained Layer Super-Lattice Photodetectors

机译:一种中波红外微球透镜增强的Ⅱ型应变层超晶格光电探测器的自动检测和提取红外光谱材料吸收的自适应技术

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摘要

In general, spectral absorptions are known to negatively affect photodetector Fourier Transform Infrared Transform (FTIR) responses. In this paper, we present an adaptive technique for automatic spectral region detection, absorption modeling and extraction. We show how a combination of several automated signal processing steps, including automatic piecewise-polynomial models derivation in addition to an automatic adaptive boundary based spectral absorption removal, leads to an effective determination of overall FTIR signal performance improvement. Our results show that for different types of lens materials the proposed adaptive algorithm can automatically quantify the increase in the detector sensitivity while additionally finding material-based absorptions and reducing their adverse effects across the MWIR band.
机译:通常,已知光谱吸收对光电探测器傅里叶变换红外变换(FTIR)响应产生频谱吸收。在本文中,我们提出了一种自动光谱区域检测,吸收建模和提取的自适应技术。我们展示了多种自动信号处理步骤的组合,包括除了自动自动基于基于边界的谱吸收除去之外的自动分段 - 多项式模型推导,导致总体FTIR信号性能改进的有效测定。我们的研究结果表明,对于不同类型的镜头材料,所提出的自适应算法可以自动量化检测器灵敏度的增加,同时另外发现基于材料的吸收并降低了跨越MWIR带的不利影响。

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