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基于平面等倾干涉原理的平面度视觉测量系统 被引量:2
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作者 王洪 王石刚 +1 位作者 薛联 秦岚 《重庆大学学报(自然科学版)》 EI CAS CSCD 北大核心 2001年第3期5-8,共4页
介绍一种基于平面等倾干涉原理的机器视觉高精度平面度测量系统。它利用等倾干涉原理 ,通过CCD提取随平面度变化的明暗相交干涉圆环条纹信息 ,根据条纹中心不变性和中心对称性 ,以开始测量点适当级次条纹中心为参考条纹 ,间隔 90°... 介绍一种基于平面等倾干涉原理的机器视觉高精度平面度测量系统。它利用等倾干涉原理 ,通过CCD提取随平面度变化的明暗相交干涉圆环条纹信息 ,根据条纹中心不变性和中心对称性 ,以开始测量点适当级次条纹中心为参考条纹 ,间隔 90°建立 4个扇形窗口 ,对窗口内条纹信息处理 ,得到细化后条纹与参考条纹径向间距 ,参照前一测量点干涉条纹径向位置 ,得到干涉条纹在各测点的变化量N。该N值既能反映出半波长整数倍 ,又能反映半波长小数倍的测点高度差信息 ,利用最小二乘原理 ,处理N值 ,得到极高精度的平面度测量误差。 展开更多
关键词 等倾干涉 条纹跟踪定位 机器视觉测量系统 最小二乘法平面度
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Improved geologic surface approximation using a multiquadric method with additional constraints 被引量:2
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作者 SONG Xianfeng RUI Xiaoping +1 位作者 JU Yiwen YANG Yongguo 《Mining Science and Technology》 EI CAS 2010年第4期600-606,共7页
Geologic surface approximation is profoundly affected by the presence, density and location of scattered geologic input data. Many studies have recognized the importance of utilizing varied sources of information when... Geologic surface approximation is profoundly affected by the presence, density and location of scattered geologic input data. Many studies have recognized the importance of utilizing varied sources of information when reconstructing a surface. This paper presents an improved geologic surface approximation method using a multiquadric function and borehole data. Additional information, i.e., inequality elevation and dip-strikes data extracted from outcrops or mining faces, is introduced in the form of physical constraints that control local changes in the estimated surface. Commonly accepted hypothesis states that geologic surfaces can be approximated to any desired degree of exactness by the summation of regular, mathematically defined, surfaces: in particular displaced quadric forms. The coefficients of the multiquadric functions are traditionally found by a least squares method. The addition of physical constraints in this work makes such an approach into a non-deterministic polynomial time problem. Hence we propose an objective function that represents the quality of the estimated surface and that includes the additional constraints by incorporation of a penalty function. Maximizing the smoothness of the estimated surface and its fitness to the additional constraints then allows the coefficients of the multiquadric function to be obtained by iterative methods. This method was implemented and demonstrated using data collected from the 81'st coal mining area of the Huaibei Coal Group. 展开更多
关键词 geologic surface spatial interpolation multiquadric function exterior penalty function physical constraints
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