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Spectrum Reconstruction for On-Chip Spectrum Sensor Array Using a Novel Blind Nonuniformity Correction Method

机译:片上频谱传感器阵列的新型盲非均匀性校正方法的频谱重构

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Filter-array spectrum sensors have been a promising structure that can be used to realize miniature spectrometers or spectrometers on-a-chip. By using multiple spectrum sensors with different spectral responses, the spectrum of a measurement object can be characterized. However, due to the low-cost and miniature design of the input optic interfaces, the intensity of the input light shining onto the imager of the sensor array may not be uniform. This unmodeled input nonuniformity could lead to a severe distortion in the spectrum measurement. Although the input nonuniformity can be alleviated by introducing dedicated input optic interface, we are interested in tackling this issue from an algorithmic perspective because 1) dedicated optics could still render 5%–10% intensity variation, and 2) the cost of computation power in electronics is potentially much lower than the cost of optics nowadays. Accordingly, we propose an iterative blind correction algorithm to solve the input light nonuniformity issue. The algorithm is based on the assumption that variation of input light intensity shall change smoothly, and hence requires no additional information. With the proposed iterative blind correction algorithm, significant improvement on the quality of spectrum reconstruction is obtained in both simulation and experimental studies.
机译:滤波器阵列频谱传感器已经成为一种有前途的结构,可用于实现微型光谱仪或单片光谱仪。通过使用具有不同光谱响应的多个光谱传感器,可以表征测量对象的光谱。然而,由于输入光学接口的低成本和微型设计,照射到传感器阵列的成像器上的输入光的强度可能不均匀。这种未建模的输入不均匀性可能导致频谱测量中的严重失真。尽管可以通过引入专用的输入光学接口来缓解输入不均匀性,但我们有兴趣从算法的角度解决此问题,因为1)专用光学系统仍可能导致5%–10%的强度变化,以及2)计算能力的成本。电子产品的价格可能远低于当今的光学产品的成本。因此,我们提出了一种迭代盲校正算法来解决输入光不均匀的问题。该算法基于以下假设:输入光强度的变化应平稳变化,因此不需要其他信息。利用所提出的迭代盲校正算法,在仿真和实验研究中都获得了频谱重构质量的显着提高。

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  • 来源
    《Sensors Journal, IEEE》 |2012年第8期|p.2586-2592|共7页
  • 作者

    Chang C.-C.;

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