Towards 100 Gbps wireless communication: Investigation of FEC interleavers for PSSS-15 spreading

L. Lopacinski, K. KrishneGowda
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引用次数: 3

Abstract

The main aspect considered in this paper is a comparison of interleaver sizes for convolutional and low-density parity-check codes (LDPC) employed for 100 Gbps wireless communication at 240 GHz with parallel sequence spread spectrum (PSSS). Interleavers required for PSSS-15 and convolutional codes are larger in silicon area than a complete Reed-Solomon decoder. Thus, convolutional codes are not recommended for the targeted application. LDPC codes require 10x smaller interleavers than convolutional codes and seem to be a good choice for the targeted data rate. Alternatively, interleaved Reed-Solomon decoders are proposed. Hard decision RS decoding reduces the size of the targeted forward error correction processor and provides error correction performance not lower than hard decision convolutional codes at the same code rate.
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迈向100gbps无线通信:用于PSSS-15传播的FEC交织器研究
本文考虑的主要方面是用于240 GHz并行序列扩频(PSSS) 100 Gbps无线通信的卷积和低密度奇偶校验码(LDPC)的交织器尺寸的比较。PSSS-15和卷积码所需的交织器比一个完整的里德-所罗门解码器的硅面积更大。因此,不建议将卷积代码用于目标应用程序。LDPC码需要比卷积码小10倍的交织器,似乎是目标数据速率的好选择。另外,提出了交错里德-所罗门解码器。硬判决RS译码减少了目标前向纠错处理器的尺寸,在相同码率下提供的纠错性能不低于硬判决卷积码。
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