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近红外光谱法分析慈竹物理力学性质的研究
作者姓名:Liu JL  Sun BL  Yang Z
作者单位:中国林业科学研究院木材工业研究所,北京,100091
基金项目:国家"十一五"科技支撑计划课题
摘    要:采用近红外光谱法对慈竹密度、抗弯强度和顺纹抗拉强度进行快速预测.利用反向区间偏最小二乘法(BiPIS)优选光谱区间,建立原始光谱和不同预处理(一阶微分、二阶微分、卷积平滑和归一化处理)光谱分析模型,同时应用偏最小二乘法(PLS)在全谱范围350~2 500 nm建立各光谱分析模唰,并对所建模型进行比较分析.结果表明:同...

关 键 词:近红外光谱法  反向区间偏最小二乘法  慈竹  物理力学性质

Estimation of the physical and mechanical properties of Neosinocalamus affinins using near infrared spectroscopy
Liu JL,Sun BL,Yang Z.Estimation of the physical and mechanical properties of Neosinocalamus affinins using near infrared spectroscopy[J].Spectroscopy and Spectral Analysis,2011,31(3):647-651.
Authors:Liu Jun-liang  Sun Bai-ling  Yang Zhong
Institution:Research Institute of Wood Industry, Chinese Academy of Forestry, Beijing 100091, China. liujunliang@caf.ac.cn
Abstract:Near infrared spectroscopy was applied to rapidly predict density, modulus of rupture and tensile strength parallel to grain of neosinocalamus affinins. Backward interval partial least squares (BiPLS) was used to find the most informative spectrum ranges, and build models based on raw spectra and pretreated spectra, including first derivative spectra, second derivative spectra, Savitzky-Golay smoothing spectra and standard normalized variate spectra. And partial least squares (PLS) models were also developed in the whole wavelength range 350-2500 nm. The results show that compared with PLS models, BiPLS could effectively find the optimal spectrum regions and improve the predictive ability of models. The optimal models of density, modulus of rupture and tensile strength parallel to grain were obtained through BiPLS method that separated the whole spectra pretreated by standard normalized variate, second derivative and first derivative respectively into 20, 30 and 20 intervals. And the prediction models of density, modulus of rupture and tensile strength parallel to grain had correlation coefficient (r) 0.85, 0.88 and 0.88, as well as root mean standard error of prediction (RMSEP) 0.0524, 0.0185 and 0.0292, respectively. The relation between NIR predicted values and actual values was good in all cases. Therefore, the experimental results demonstrated that NIR spectroscopy was promising for predicting the physical and mechanical properties of neosinocalamus affinins.
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