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Variable LLR scaling in LDPC min-sum decoding under horizontal shuffled structure

机译:水平混洗结构下LDPC最小和解码中的可变LLR缩放

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LDPC was first proposed in 1962, after that considerable achievements have been made both in decoding algorithms and also in the structure of the decoder. In terms of decoding algorithm, from belief propagation (BP) to min-sum (MS), then normalized MS (NMS) and finally to a more performance oriented variable MS (VMS) algorithm. In terms of the decoder structure, there are mainly two, flooding and shuffled structure (FS and SS), and flooding structure is mainly used in the past and the selection of variable factors in FS VMS has already been studied in the literature. As is known, the horizontal shuffled structure (HSS) are more hardware friendly and now widely deployed, thus to apply VMS algorithm to HSS has an important meaning for the industry. However, there is no effective method for the selection of variable factors in HSS VMS. Based on the study of FS VMS, this paper describes how to apply the generalized mutual information (GMI) based metric to HSS VMS reasonably and proposes the modified GMI based formula. Simulation results on a certain DVB-S2's LDPC code show that, by using modified formula for HSS VMS, we can obtain 0.13dB gain over HSS NMS and the performance is only 0.1dB away from that of HSS BP in terms of bit error rate (BER) at level 1e-7. And simulation results on a certain DVB-T2's LDPC code show that, by using modified formula for HSS VMS, we can obtain 0.04dB gain over HSS NMS and the performance is only 0.06dB away from that of HSS BP in terms of bit error rate (BER) at level 1e-7.
机译:LDPC于1962年首次提出,此后在解码算法和解码器结构上均取得了相当大的成就。在解码算法方面,从置信传播(BP)到最小和(MS),然后是归一化MS(NMS),最后是面向性能的变量MS(VMS)算法。就解码器结构而言,主要有两种,泛洪和混洗结构(FS和SS),过去主要使用泛洪结构,并且已经在文献中研究了FS VMS中可变因素的选择。众所周知,水平改组结构(HSS)在硬件上更友好,并且现在已被广泛部署,因此将VMS算法应用于HSS对行业具有重要意义。但是,HSS VMS中没有有效的方法来选择可变因素。在对FS VMS的研究基础上,本文介绍了如何将基于通用互信息(GMI)的度量合理地应用于HSS VMS,并提出了改进的基于GMI的公式。在某DVB-S2的LDPC码上的仿真结果表明,通过对HSS VMS使用改进的公式,我们可以获得比H​​SS NMS 0.13dB的增益,并且在误码率方面,性能仅比HSS BP高0.1dB( BER)在1e-7级。在某DVB-T2的LDPC码上的仿真结果表明,通过对HSS VMS使用修正公式,可以得到比HSS NMS高0.04dB的增益,从误码率的角度来看,其性能仅比HSS BP低0.06dB。 (BER)在1e-7级。

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