On the bit error rate of repeated error-correcting codes

Weihao Gao, Yury Polyanskiy
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引用次数: 5

Abstract

Classically, error-correcting codes are studied with respect to performance metrics such as minimum distance (combinatorial) or probability of bit/block error over a given stochastic channel. In this paper, a different metric is considered. It is assumed that the block code is used to repeatedly encode user data. The resulting stream is subject to adversarial noise of given power, and the decoder is required to reproduce the data with minimal possible bit-error rate. This setup may be viewed as a combinatorial joint source-channel coding. Two basic results are shown for the achievable noise-distortion tradeoff: the optimal performance for decoders that are informed of the noise power, and global bounds for decoders operating in complete oblivion (with respect to noise level). General results are applied to the Hamming [7, 4, 3] code, for which it is demonstrated (among other things) that no oblivious decoder exist that attains optimality for all noise levels simultaneously.
重复纠错码的误码率
传统上,纠错码是根据性能指标来研究的,例如在给定的随机信道上的最小距离(组合)或位/块错误概率。在本文中,考虑了一个不同的度量。假定块码用于重复对用户数据进行编码。所产生的流受到给定功率的对抗性噪声的影响,并且要求解码器以最小可能的误码率再现数据。这种设置可以看作是一种组合联合源信道编码。对于可实现的噪声失真权衡,显示了两个基本结果:被告知噪声功率的解码器的最佳性能,以及在完全遗忘(相对于噪声水平)的情况下解码器的全局边界。一般结果应用于Hamming[7,4,3]代码,它被证明(除其他事项外)不存在对所有噪声水平同时达到最优性的遗忘解码器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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