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An error evaluation apparatus for object contour

机译:用于物体轮廓的误差评估装置

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Arbitrarily shaped video objects are an important concept in modern video coding methods. The techniques presently used are not based on image elements but rather video objects having an arbitrary shape. The contour of this shape has to be transmitted and therefore compressed as well. The example is standard MPEG-4. In mobile video communication, transmission errors and loss of data can occur. In the paper, different approaches to object contour error evaluation are discussed. The contour error occurs as a result of approximation during encoding and transmission errors. As a compare criterion of the evaluation, Hausdorff distance between convex polygons is used. New evaluation is constructed on the technique of transforming the Cartesian x and y contour coordinate functions to the domain of polar coordinates yielding an r and a phi function. New evaluation respects specific local artifacts or errors better if compared to systems based on distance of point sets.
机译:任意形状的视频对象是现代视频编码方法中的重要概念。当前使用的技术不是基于图像元素,而是具有任意形状的视频对象。这种形状的轮廓必须被传递并且因此也被压缩。该示例是标准MPEG-4。在移动视频通信中,可能会发生传输错误和数据丢失。在本文中,讨论了对象轮廓误差评估的不同方法。轮廓误差是编码和传输误差期间的近似结果。作为评估的比较标准,使用了凸多边形之间的Hausdorff距离。基于将笛卡尔x和y轮廓坐标函数转换为极坐标域并产生r和phi函数的技术,可以构建新的评估。与基于点集距离的系统相比,新评估更好地考虑了特定的局部伪影或错误。

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