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为了能在模糊或有噪声的图像中直接检测角点,提出了一种对比多尺度下灰度差异几何特征和搜索局部灰度最大权值的角点检测方法。该方法根据图像中角点位置的灰度差异,采用多尺度圆形检测器遍历图像,对比不同尺度下检测器所得到的几何参数来初步确定角点位置并剔除边缘附近的伪角点;根据局部灰度权值最大原则去除由于圆形检测器的离散性而聚集在真角点周围伪角点,并确定角点的最终位置。实验结果表明,相对于传统算法,该方法能够在对噪声或模糊图像不做预处理的情况下检测出角点。 相似文献
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Two unconventional nano-aperture light sources, an L-shaped nano-aperture source and a 3D nano-aperture source for high-density optical data storage, are numerically investigated. With incidence of a Gaussian beam, the spot size of the Poynting vector coupled into the recording medium is 130 × 175 nm^2 for the L-aperture and 120 × 135 nm^2 for the 3D nano-aperture. The quantitative analyses indicate that the unconventional nanoaperture sources can provide enough power density to record marks in the commercial recording medium. It is feasible to use a laser diode with a nano-aperture as an active nanometer light source for high-density optical data storage. 相似文献
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