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Analysis and design of power-efficient coding schemes with parallel concatenated convolutional codes

机译:并行级联卷积码的高能效编码方案的分析与设计

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摘要

In the low signal-to-noise ratio regime, the performance of concatenated coding schemes is limited by the convergence properties of the iterative decoder. Idealizing the model of iterative decoding by an independence assumption, which represents the case in which the codeword length is infinitely large, leads to analyzable structures from which this performance limit can be predicted. Mutual information transfer characteristics of the constituent coding schemes comprising convolutional encoders and soft-in/soft-out decoders have been shown to be sufficient to characterize the components within this model. Analyzing serial and parallel concatenations is possible just by these characteristics. In this paper, we extend the method of extrinsic information transfer charts, that is limited to the case of a concatenation of two component codes, to the case of multiple turbo codes. Multiple turbo codes are parallel concatenations of three or more constituent codes, which, in general, may not be identical and may not have identical code rates. For the construction of low-rate codes, this concept seems to be very favorable, as power efficiencies close to the Shannon limit can be achieved with reasonable complexity.
机译:在低信噪比条件下,级联编码方案的性能受迭代解码器的收敛特性限制。通过独立性假设来理想化迭代解码的模型,该独立性代表了代码字长度无限大的情况,从而导致了可分析的结构,可以从中预测该性能极限。包括卷积编码器和软输入/软输出解码器的组成编码方案的相互信息传递特性已显示出足以表征此模型中的组件。仅凭这些特性就可以分析串行和并行连接。在本文中,我们将非本征信息传递图的方法(仅限于两个分量代码串联的情况)扩展为多个turbo码的情况。多个turbo码是三个或更多组成码的并行级联,通常,它们可能不相同并且可能不具有相同的码率。对于低速率代码的构造,此概念似乎非常有利,因为可以以合理的复杂度实现接近Shannon限制的功率效率。

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