Huang Cheng, Salama Paul
NTIUS, Inc., Irvine, CA 92618, USA.
IEEE Trans Image Process. 2005 Apr;14(4):389-96. doi: 10.1109/tip.2004.841197.
In asynchronus transfer mode networks, cell loss or channel errors can cause data to be dropped in the channel. When digital images/videos are transmitted over these networks, one must be able to reconstruct the missing data so that the impact of the errors is minimized. In this paper, we present an error-concealment technique for shape in MPEG-4 object-based video coding. This method, which is based on using global motion estimation and compensation techniques for boundary recovery, consists of three steps: (1) boundary extraction from shape; (2) boundary patching using global motion compensation; and (3) boundary filling to reconstruct the shape of the damaged video object planes. Global motion parameters are inserted as part of the USER_DATA field in the compressed stream and are utilized in reconstructing the damaged boundaries of compressed video object planes.
在异步传输模式网络中,信元丢失或信道错误会导致数据在信道中丢失。当数字图像/视频通过这些网络传输时,必须能够重建丢失的数据,以便将错误的影响降至最低。在本文中,我们提出了一种用于基于MPEG-4对象的视频编码中的形状错误隐藏技术。该方法基于使用全局运动估计和补偿技术进行边界恢复,包括三个步骤:(1) 从形状中提取边界;(2) 使用全局运动补偿进行边界修补;(3) 边界填充以重建受损视频对象平面的形状。全局运动参数作为用户数据字段的一部分插入到压缩流中,并用于重建压缩视频对象平面的受损边界。