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An Efficient Code Structure of Block Coded Modulations with Iterative Viterbi Decoding Algorithm

机译:采用迭代维特比译码算法的分组编码调制的有效码结构

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Block coded modulations (BCM) with iterative Viterbi decoding algorithm can provide both high transmission throughput and small error probability. In this paper, a new code structure is proposed to further improve the performance. The strategy of the new code is to add parity check codes at corresponding coding levels of BCM to increase the Hamming distances among codewords. Decoding trellis of Viterbi decoding to support the new code structure is also developed. It is shown that the proposed code structure can not only guarantee the Euclidean distance of BCM but also mitigate the burden of iterative decoding. As a result, the proposed code structure can provide better transmission rates than the old one with identical or less decoding complexity. Computer simulation shows that the proposed code structure is also beyond the old one in bit error rate performance.
机译:具有迭代维特比解码算法的块编码调制(BCM)既可以提供高传输吞吐量,又可以提供较小的错误概率。本文提出了一种新的代码结构,以进一步提高性能。新代码的策略是在BCM的相应编码级别上添加奇偶校验码,以增加码字之间的汉明距离。还开发了维特比解码的解码网格以支持新的代码结构。结果表明,所提出的编码结构不仅可以保证BCM的欧几里德距离,而且可以减轻迭代解码的负担。结果,所提出的代码结构可以提供比具有相同或更少解码复杂度的旧代码结构更好的传输速率。计算机仿真表明,所提出的代码结构在误码率性能上也超出了旧的代码结构。

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