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Distance spectrum calculation method for double binary turbo codes

机译:双二进制turbo码的距离谱计算方法

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摘要

With the rapid development and deployment of M2M, Mesh, ad-hoc and other types of decentralized random wireless communication systems, there are more demands on powerful forward error correction codes (FEC) with short length recently. Due to its error correction (EC) capability, convolutional TUrbo code (CTC) with short length has been applied widely. In this paper, the distance spectrum (DS), which can catch the EC performance efficiently, is studied for CTCs. Firstly the DS of tail-biting (TB) duo-binary recursive systematic convolutional codes (RSC) is calculated by the modified FAST algorithm, and then the DS calculation of CTC with dual TB technique under the concept of uniform interleaver is presented. Given the DS results, the bit error probability (BEP) performance of the CTC can be analyzed on the base of union bound and pairwise error probability (PEP) techniques. The analysis on the EC performance of CTC is verified by Monte Carlo simulations, and the results show the analysis greatly matches the simulation results.
机译:随着M2M,Mesh,ad-hoc和其他类型的分散式随机无线通信系统的快速发展和部署,近来对短长度的强大前向纠错码(FEC)提出了更高的要求。由于其纠错(EC)功能,短长度的卷积TUrbo码(CTC)已得到广泛应用。本文研究了可以有效捕获EC性能的距离频谱(DS),用于CTC。首先利用改进的FAST算法计算了TB(bit-biting)双二进制递归系统卷积码(RSC)的DS,然后提出了在均匀交织器概念下采用双TB技术的CTC的DS计算。给定DS结果,可以基于联合约束和成对错误概率(PEP)技术分析CTC的误比特概率(BEP)性能。通过蒙特卡洛仿真验证了对四氯化碳EC性能的分析,结果表明该分析与仿真结果非常吻合。

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