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Reduction of Complexity for Nonbinary LDPC Decoders With Compressed Messages

机译:具有压缩消息的非二进制LDPC解码器的复杂度降低

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摘要

In this brief, a method for compressing the messages between check nodes and variable nodes is proposed. This method is named compressed nonbinary message passing (CNBMP). CNBMP reduces the number of messages exchanged between one check node and the connected variable nodes from to , and its application has a high impact on the performance of the decoder: the storage and routing areas are reduced and the throughput is increased. Unlike other methods, CNBMP does not introduce any approximation or modification in the information and the processed operations are exactly the same as those of the original decoders; hence, no performance degradation is introduced. To demonstrate its advantages, an architecture applying this CNBMP to the Trellis Min-Max algorithm was derived showing that most of the storage resources were also reduced from to . This architecture was implemented for a (837 726) nonbinary low-density parity-check code using a 90-nm CMOS technology reaching a throughput of 981 Mb/s with an area of 10.67 mm, which is 3.9 more efficient than the best solution found in the literature.
机译:在此简要中,提出了一种用于压缩校验节点和变量节点之间的消息的方法。此方法称为压缩非二进制消息传递(CNBMP)。 CNBMP将一个校验节点和连接的变量节点之间交换的消息数量从减少到,它的应用对解码器的性能有很大影响:减少了存储和路由区域,并提高了吞吐量。与其他方法不同,CNBMP不会在信息中引入任何近似或修改,并且处理后的操作与原始解码器完全相同。因此,不会导致性能下降。为了证明其优势,推导了将该CNBMP应用于Trellis Min-Max算法的体系结构,该体系结构表明大多数存储资源也从减少到。此架构是使用90nm CMOS技术针对(837726)非二进制低密度奇偶校验码实现的,吞吐量达到981 Mb / s,面积为10.67 mm,这比找到的最佳解决方案高3.9在文学中。

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