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基于引力定律与移动准则的图像边缘检测算法 被引量:2
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作者 魏琴 肖阳春 刘伟 《计算机工程与设计》 北大核心 2017年第10期2820-2826,共7页
针对当前边缘检测算法的边缘定位低,在同质区域难以精确检测图像边缘细节等问题,提出一种基于万有引力定律与探测器移动准则的图像边缘检测算法。基于万有引力定律,建立图像空间模型;根据空间模型,设计基于万有引力的边缘检测模型的探测... 针对当前边缘检测算法的边缘定位低,在同质区域难以精确检测图像边缘细节等问题,提出一种基于万有引力定律与探测器移动准则的图像边缘检测算法。基于万有引力定律,建立图像空间模型;根据空间模型,设计基于万有引力的边缘检测模型的探测器,分别计算探测器上的力、速度、变异算子、位移以及引力势,建立探测器移动准则,根据移动准则,更新探测器位置和引力势能矩阵,精确跟踪边缘像素;设置迭代停止条件,通过多次迭代完成图像边缘检测。实验结果表明,与目前常用的边缘检测算法相比较,在视觉感知和定量评价的比较中,该算法具有更高的边缘定位精度和噪声抑制能力,能够有效对同质区域边缘完成检测。 展开更多
关键词 图像边缘检测 万有引力定律 空间模型 探测器 移动准则 势能矩阵
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Analytical solutions of stress and displacement in strain softening rock mass around a newly formed cavity 被引量:6
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作者 鲁燕儿 杨武 《Journal of Central South University》 SCIE EI CAS 2013年第5期1397-1404,共8页
The closed form solutions of the stress and displacement in strain softening rock mass around a newly formed cavity are derived with a three step-wise elasto-plastic model. Hoek-Brown criterion is adopted as the yield... The closed form solutions of the stress and displacement in strain softening rock mass around a newly formed cavity are derived with a three step-wise elasto-plastic model. Hoek-Brown criterion is adopted as the yielding criterion of rock mass. Damage factors are proposed to account for degradation of the material parameters to reflect the degree of strain softening. The surrounding rock mass around the cavity is divided into three regions: elastic region, strain softening region and residual state region. The analytical solutions of stress, strain, displacement and radius of each region are obtained. The effects of the strain softening and shear dilatancy behavior on the results are investigated with parametric studies. The results show that the radii of the residual state region and strain softening region in the surrounding rock mass with higher damage degree are larger. The radii of the residual state region and strain softening region are 1-2 times and 1.5-3 times of the cavity radius, respectively. The radial and tangential stresses decrease with the increase of the damage factor. The displacement of the cavity wall for the case with maximum plastic bulk strain is nearly twice than that with no dilation. Rock mass moves more toward the center for the case with larger damage factor and shear dilation. The area of the plastic region is larger when the damage factors are considered. The displacements in the surrounding rock mass increase with the increase of the damage factors and shear dilation factors. The solutions can be applied to the stability analysis and support design of the underground excavation. 展开更多
关键词 strain softening Hoek-Brown criterion step-wise elasto-plastic model damage factor shear dilation
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