长春理工大学光电信息学院,吉林,长春,130000
纸质出版日期:2018,
网络出版日期:2018-7-25,
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李娟, 孙秀玲, 孙海峰. 改进型Mertz法在多光谱数据重建中的应用[J]. 中山大学学报(自然科学版)(中英文), 2018,57(4):104-109.
LI Juan, SUN Xiuling, SUN Haifeng. Research on improved Mertz method for application of multispectral data reconstruction[J]. Acta Scientiarum Naturalium Universitatis SunYatseni, 2018,57(4):104-109.
为了克服单一波长标定引入的误差,提出了一种针对多特征波长的并行采集与特征提取方法。在多光谱数据获取过程中相位误差成因分析的基础上,设计了一种改进型Mertz法;该算法采用DSP中不同寄存器进行交替参数变化,实现了对不同特征波长校正参数的调整,抑制了零点偏移造成的相位误差。由DSP6713、Roper公司的高速线阵CCD、静态干涉具、聚焦透镜组等构建了实验系统,系统测试激光的中心波长分别是632.0、650.0以及660.0 nm。最后,将本算法的测试结果与实验数据进行了对比,结果表明:① 传统标定方法进行相比,特征峰值更明显、旁瓣更小、信噪比提高;② 相比TENSOR-27型光谱仪的测试数据,噪声均值从-30 dB下降到了-32 dB。
In order to overcome the error introduced by single wavelength calibration
a parallel acquisition and feature extraction method is proposed for multi-feature wavelength. Based on the analysis of phase error causes
an improved Mertz method was designed for multi-spectral data acquisition. In this algorithm
the parameters in different registers of the DSP are alternated. It realizes the adjustment of the different characteristic wavelength correction parameters and suppresses the phase error caused by the zero offset. The experimental system was constructed by DSP6713
Roper's high-speed linear array CCD
static interference tool and focusing lens group. The center wavelengths of the system test laser were 632.0
650.0 and 660.0 nm
respectively. Finally
the test results of this algorithm are compared with the experimental data. The results show that: ① Compared with the traditional calibration method
the characteristic peak is more obvious
the side lobes are smaller
and the signal-to-noise ratio is improved. ② Compared with the test data of the TENSOR-27 spectrometer
the mean of noise dropped from -30 dB to -32 dB.
多光谱处理系统改进型Mertz法多光谱区分相位标定
multispectral processing systemmodified Mertz methodmulti-spectral discriminationphase calibration
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