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基于遗传算法和数学形态学的木材分选图像分割研究 被引量:1
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作者 刁智多 张冬妍 曹军 《自动化技术与应用》 2012年第1期59-62,共4页
在木材分选过程中,能否精确提取缺陷轮廓是提高分选准确率的重要因素。本文讨论了提取木材缺陷轮廓的方法,应用了遗传算法与数学形态学相结合的方法对缺陷图像进行图像分割,最终提取出缺陷边缘,并与使用传统方法进行图像分割后提取出来... 在木材分选过程中,能否精确提取缺陷轮廓是提高分选准确率的重要因素。本文讨论了提取木材缺陷轮廓的方法,应用了遗传算法与数学形态学相结合的方法对缺陷图像进行图像分割,最终提取出缺陷边缘,并与使用传统方法进行图像分割后提取出来的缺陷边缘结果相对比。对比结果显示,经过遗传算法和数学形态学进行图像分割,最后得到的木材缺陷轮廓更加清晰,连贯,易于识别。 展开更多
关键词 图像分割 遗传算法 数学形态学 木材分选
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Variation of microfibril angle and its correlation to wood properties in poplars 被引量:8
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作者 方升佐 杨文忠 洑香香 《Journal of Forestry Research》 SCIE CAS CSCD 2004年第4期261-267,共7页
The microfibril angle of seven poplar clones was determined by using X-ray diffraction technique. Microfibril angle, wood basic density, fiber length, fiber width and cellulose content were assessed for every growth r... The microfibril angle of seven poplar clones was determined by using X-ray diffraction technique. Microfibril angle, wood basic density, fiber length, fiber width and cellulose content were assessed for every growth ring at breast height for all sample trees. Significant variation in microfibril angle was observed among growth rings. Mean microfibril angle (MFA) at breast height varied from 7.8?to 28?between growth rings with cambial age and showed a consistent pith-to-bark trend of decline an-gles. Analysis of variance also indicated that there were significant differences in wood basic density, fiber length, fiber width and cellulose content between the growth rings, which had an increasing tendency from pith to bark. Correlations between MFA and examined wood properties were predominantly large and significant negative (?0.01), and the coefficients were -0.660 for cellulose content, -0.586 for fiber length, -0.516 for fiber width and -0.450 for wood basic density, respectively. Regression analysis with linear and curve estimation indicated that a quadratic function showed the largest R2 and the least standard error for describing the relationships between microfibril angle and measured wood properties, and the correlation coefficients were over -0.45 (n=125). The results from this study suggested that microfibril angle would be a good characteristic for improvement in the future breeding program of poplars. 展开更多
关键词 Poplar clone Microfibril angle X-ray diffraction Wood property Selective breeding
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