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Pre-processing stereo transparent images: extraction of non-transparent regions by variable length pattern correspondence

机译:预处理立体透明图像:通过可变长度模式对应提取非透明区域

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One of the hallmarks of a transparent image is the superimposition of structures in the image. This gives the image its "see through" character. However, portions of a transparent image can be considered non-transparent if no superimposed structures are present. By defining a new type of pixel uniqueness, which the authors call "pattern uniqueness", the nontransparent portions of transparent images can be identified, and either removed to clarify the adjacent image features or used as templates to find and separate superimposed structures. Several adjustable criteria were defined in order to optimize the algorithm's performance: main parameters include two types of pattern similarity and minimum pattern cohesiveness. Simulated stereo image lines were processed by the algorithm with various parameter settings. An analysis of variance determined the influence of parameter alteration on algorithmic performance. It was found that the matching similarity, cohesiveness, and interaction between these variables were very important and could be adjusted to optimize noise tolerance and performance.
机译:透明图像的标志之一是图像中结构的叠加。这使图像具有“透视”字符。但是,如果不存在重叠结构,则可以将透明图像的某些部分视为不透明。通过定义一种新型的像素唯一性(作者称之为“图案唯一性”),可以识别透明图像的不透明部分,然后将其移除以阐明相邻的图像特征,或者用作模板以查找和分离重叠的结构。为了优化算法的性能,定义了几个可调整的标准:主要参数包括两种模式相似度和最小模式内聚力。通过算法使用各种参数设置来处理模拟的立体图像线。方差分析确定了参数更改对算法性能的影响。结果发现,这些变量之间的匹配相似性,内聚性和相互作用非常重要,可以对其进行调整以优化噪声容忍度和性能。

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