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Time-division versus superposition coded modulation schemes for unequal error protection

机译:时分与叠加编码调制方案可提供不均等的错误保护

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摘要

This paper is concerned with the design problem of coded modulation schemes which provide unequal error protection (UEP) against Gaussian noise. Starting with the case of two bit streams, we consider two classes of UEP schemes: time-division coded modulation (TDCM) and superposition coded modulation (SCM). The early result of Bergmanns and Cover (1974) ensures the asymptotic superiority of SCM. However, accounting for the fact that practical channel codes do not achieve capacity, we show that the validity of this result depends on the prescribed degree of inequality in protection of the streams. To complement the straightforward design and use of TDCM schemes, we propose methods to decode and design SCM schemes. The design examples substantiate the conclusions obtained from performance analysis. We extend the results to the case of UEP of multiple (more than two) bit streams, where a hybrid of SCM and TDCM must also be considered. We show that, for a large range of unequal protection levels, the hybrid scheme outperforms both SCM and TDCM.
机译:本文关注的是编码调制方案的设计问题,该方案提供了针对高斯噪声的不均等错误保护(UEP)。从两个比特流的情况开始,我们考虑两类UEP方案:时分编码调制(TDCM)和叠加编码调制(SCM)。 Bergmanns and Cover(1974)的早期结果确保了SCM的渐近优势。但是,考虑到实际的信道代码无法实现容量这一事实,我们证明了该结果的有效性取决于保护流方面规定的不平等程度。为了补充TDCM方案的直接设计和使用,我们提出了解码和设计SCM方案的方法。设计实例证实了从性能分析中得出的结论。我们将结果扩展到多个(两个以上)比特流的UEP情况,其中还必须考虑SCM和TDCM的混合。我们表明,对于很大范围的不平等保护级别,混合方案的性能优于SCM和TDCM。

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