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首页> 外文期刊>IEEE Transactions on Communications >Design of serially concatenated systems depending on the block length
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Design of serially concatenated systems depending on the block length

机译:取决于块长度的串联系统的设计

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摘要

Based on extrinsic information transfer (EXIT) charts, the convergence behavior of iterative decoding is studied for a number of serially concatenated systems, such as a serially concatenated code, coded data transmission over an intersymbol interference channel, bit-interleaved coded modulation, or trellis-coded modulation. Efficient optimization algorithms based on simplified EXIT chart construction are devised to find irregular codes improving the convergence of iterative decoding. One optimization criterion is to find concatenated systems exhibiting thresholds of successful decoding convergence, which are close to information-theoretic limits. However, these thresholds are approached only for very long block lengths. To overcome this problem, the decoding convergence after a fixed, finite number of iterations is optimized, which yields systems performing very well for short block lengths, too. As an example, optimal system configurations for communication over an additive white Gaussian noise channel are presented.
机译:基于外部信息传递(EXIT)图,研究了许多串行级联系统的迭代解码的收敛行为,例如串行级联代码,符号间干扰信道上的编码数据传输,比特交错编码调制或网格编码调制。设计了一种基于简化EXIT图表构造的高效优化算法,以找到提高迭代解码收敛性的不规则码。一种优化标准是找到显示成功解码收敛阈值的串联系统,该阈值接近信息理论极限。然而,仅对于非常长的块长度才接近这些阈值。为了克服这个问题,优化了固定的有限数量的迭代之后的解码收敛性,这也使得系统在短块长度上也表现出色。作为示例,提出了用于通过加性高斯白噪声信道进行通信的最佳系统配置。

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