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JPEG2000-coded image error concealment exploiting convex sets projections
DOI:10.1109/TIP.2005.843755.png)
摘要
En 中文
Transmission errors in JPEG2000 can be grouped into three main classes, depending on the affected area: LL, high frequencies at the lower decomposition levels, and high frequencies at the higher decomposition levels. The first type of errors are the most annoying but can be concealed exploiting the signal spatial correlation like in a number of techniques proposed in the past; the second are less, annoying but more difficult to address; the latter are often imperceptible. In this paper, we address the problem of concealing the second class or errors when high bit-planes are damaged by proposing a new approach based on the theory of projections onto convex sets. Accordingly, the error effects are masked by iteratively applying two procedures: low-pass (LP) filtering in the spatial domain and restoration of the uncorrupted wavelet coefficients in the transform domain. It has been observed that a uniform LP filtering brought to some undesired side effects that negatively compensated the advantages. This problem has been overcome by applying an adaptive solution, which exploits an edge map to choose the optimal filter mask size. Simulation results demonstrated the efficiency of the proposed approach.
Keyword:
error concealment
JPEG2000
projections onto convex sets
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期刊
IF:
13.7
论文数:
1.0W
被引数:
8.4W
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引用论文
Robust image transmission using resynchronizing variable-length codes and error concealment使用重新同步可变长度码和错误隐藏的鲁棒图像传输

