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首页> 外文期刊>Signal Processing. Image Communication: A Publication of the the European Association for Signal Processing >Block error-correcting codes for systems with a very high BER: Theoretical analysis and application to the protection of water marks
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Block error-correcting codes for systems with a very high BER: Theoretical analysis and application to the protection of water marks

机译:误码率很高的系统的块纠错码:理论分析和在水印保护中的应用

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This paper addresses the problem of error-correction for extremely noisy channels (BER from 0.1 to 0.5), such as those obtained for image or video watermarking. Minimum distance arguments are used to identify a region for which no other code is as efficient as repetition codes, whatever the rate, at least when bounded decoding is considered. However, in order to obtain a reasonable and sufficiently low BER, repetition codes are not very efficient. We present a coding scheme concatenating a repetition code with another one, and design rules in order to select these codes for a given watermarking application are developed. The repetition code lowers the huge channel BER, as no other code can do this part of the job. Then, the second more powerful code working at a lower BER achieves a larger BER reduction. In this paper, this role is devoted BCH codes, as members of a classical family. Thanks to their moderate decoding complexity, they turn out to be an interesting cost versus performance trade-off, while more efficient coding schemes based on soft decoding are far more complex. However, we also provide and idea of the solutions to consider for watermarking applications with fewer complexity limitations, for which more powerful decoding techniques can be implemented.
机译:本文解决了对于噪声很大的通道(BER从0.1到0.5)的纠错问题,例如为图像或视频水印获得的通道。最小距离参数用于识别一个区域,至少在考虑到有界解码的情况下,无论其速率如何,对于该区域,没有其他代码比重复代码更有效。然而,为了获得合理且足够低的BER,重复码不是很有效。我们提出了一种将重复代码与另一个代码串联在一起的编码方案,并开发了设计规则,以便为给定的水印应用选择这些代码。重复代码降低了巨大的信道BER,因为没有其他代码可以完成这部分工作。然后,以较低的BER工作的第二个更强大的代码可实现更大的BER降低。在本文中,此角色是经典家庭成员中专用的BCH代码。由于它们具有适度的解码复杂性,因此它们在成本与性能之间取得了权衡,而基于软解码的更有效的编码方案则要复杂得多。然而,我们还提供了具有较少复杂性限制的水印应用要考虑的解决方案的思想,可以为其实现更强大的解码技术。

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