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Bounds on the a priori index crossover probabilities for trellis-based channel codes

机译:基于网格的通道码的先验索引交叉概率的界线

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摘要

This paper derives truncated union bounds on the a priori index crossover probabilities p(j|i) that result when an n-bit data index i is convolutionally encoded, transmitted over a noisy channel, and decoded with the Viterbi algorithm, giving received index j. The bounds are derived with a modified transfer function technique, using n-stage state transition matrices with symbolic labels. The technique is easily automated with commercial symbolic algebra packages. Bounds are obtained for convolutional and trellis-coded modulation (TCM) codes, over binary symmetric and additive white Gaussian noise (AWGN) channels. A joint source channel coding example demonstrates that the bounds on p(j|i) developed in this paper can give a 13-dB accuracy improvement in end-to-end signal-to-noise ratio (SNR) predictions, when compared to predictions based on bounds on the delivered bit error probability P/sub b/.
机译:本文推导了先验索引交叉概率p(j | i)的截断联合界,当n位数据索引i被卷积编码,在嘈杂的信道上传输并用维特比算法解码时,得出接收的索引j 。使用带有符号标签的n阶段状态转换矩阵,使用改进的传递函数技术导出边界。该技术可通过商业符号代数软件包轻松实现自动化。在二进制对称和加性白高斯噪声(AWGN)通道上,获得卷积和网格编码调制(TCM)码的界限。一个联合源信道编码示例表明,与预测相比,本文开发的p(j | i)的边界可以在端对端信噪比(SNR)预测中提供13dB的精度改进基于传送的误码概率P / sub b /的边界。

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