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Near-capacity irregular variable length coding and irregular unity rate coding

机译:近容量不规则可变长度编码和不规则单位速率编码

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In this contribution we introduce an EXtrinsic Information Transfer (EXIT) chart matching technique for the design of two serially concatenated irregular codecs, each constituted by a variety of component codes. This approach facilitates a higher degree of design freedom than matching the EXIT function of an irregular codec to that of a regular codec, comprising only a single component code. As a result, a narrower EXIT chart tunnel can be created, facilitating operation at Eb/N0 values that are closer to the channel¿s capacity bound. This is demonstrated for a serial concatenation of iteratively decoded Irregular Variable Length Coding (IrVLC) and Irregular Unity Rate Coding (IrURC), which is favourably compared with an IrVLC and regular Unity Rate Coding (URC) based benchmarker. Finally, we show that the iterative decoding complexity of our IrVLCIrURC scheme can be reduced by about 25% upon employing a method of jointly performing EXIT chart matching, while seeking a reduced iterative decoding complexity.
机译:在本文中,我们介绍了一种外部信息传递(EXIT)图表匹配技术,用于设计两个串联的不规则编解码器,每个编解码器均由各种组件代码组成。与将不规则编解码器的EXIT功能与仅包含单个组件代码的常规编解码器的EXIT功能进行匹配相比,此方法可提高设计自由度。结果,可以创建更窄的EXIT图表隧道,从而以更接近通道容量限制的Eb / N0值进行操作。迭代解码的不规则可变长度编码(IrVLC)和不规则统一速率编码(IrURC)的串行级联得到了证明,与基于IrVLC和常规统一速率编码(URC)的基准测试程序相比,它具有优势。最后,我们表明,在寻求降低迭代解码复杂度的同时,采用联合执行EXIT图匹配的方法,可以将IrVLCIrURC方案的迭代解码复杂度降低约25%。

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