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A proposed decoding scheme for robust error correction in advanced ATSC Systems

机译:一种用于高级ATSC系统中鲁棒纠错的解码方案

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This paper describes an advanced decoding scheme for ATSC Systems. To improve the reception under dynamic propagation conditions an advanced VSB (A-VSB) was proposed. One of the new features in this transmission system is the improved performance of forward error correction. To use the full capacity of this redundancy information, an optimum decoding algorithm is essential. Most receivers use a soft-output Viterbi algorithm as convolutional decoding which offers the opportunity of adapting likelihood paths easily. Not only Reed-Solomon corrected packets might be fed back to the Viterbi decoder and can be used as soft-input information. Even transport stream sequences, which appear periodically, could be useful for an optimum convolutional decoder. This paper shows an example, how transport stream information might be used as additional forward error correction. Finally, results of the improvements are shown as bit-error probability in AWGN channel at the convolutional decoders output.
机译:本文介绍了一种用于ATSC系统的高级解码方案。为了改善在动态传播条件下的接收,提出了一种先进的VSB(A-VSB)。该传输系统的新功能之一是前向纠错性能的提高。为了使用该冗余信息的全部容量,最佳的解码算法是必不可少的。大多数接收器使用软输出维特比算法作为卷积解码,这提供了轻松调整似然路径的机会。不仅经过Reed-Solomon校正的数据包都可以反馈到Viterbi解码器,而且可以用作软输入信息。甚至周期性出现的传输流序列也可能对最佳卷积解码器有用。本文显示了一个示例,说明如何将传输流信息用作附加的前向纠错。最后,改进结果显示为卷积解码器输出处的AWGN信道中的误码概率。

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