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Structure-based decoding for hierarchically modulated, LDPC coded signals

机译:基于结构的解码,用于分层调制的LDPC编码信号

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摘要

In this paper, we present a structured LDPC decoding algorithm for hierarchical QAM modulation systems. Unlike the traditional hierarchical demodulation approaches which suffer from serious inter-layer interference (ILI), the proposed method exploits structure information of the secondary layer to mitigate the ILI impairment, thereby offers significant gains in reception performance. An achievable rate analysis is performed to calculate the theoretical limit of the basic layer in HM reception, which in certain cases is 8 dB better than the required SINR threshold for QAM detection with all Gaussian interference. The new algorithm has been implemented on a broadband in-band on-channel (IBOC) digital radio broadcasting system. Numerical results from both simulations and experiments are provided to quantify the performance advantages of the new algorithm against the DVB-T benchmark.
机译:在本文中,我们提出了一种用于分层QAM调制系统的结构化LDPC解码算法。与遭受严重的层间干扰(ILI)的传统分层解调方法不同,该方法利用次要层的结构信息来减轻ILI损害,从而在接收性能上获得可观的收益。进行可实现的速率分析,以计算HM接收中基本层的理论极限,在某些情况下,该极限比所有高斯干扰下进行QAM检测所需的SINR阈值高8 dB。新算法已在宽带带内同频(IBOC)数字无线电广播系统上实现。提供了来自仿真和实验的数值结果,以量化新算法相对于DVB-T基准的性能优势。

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