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A Novel High Speed Communication System Based on the Concatenation of RS and QC - LDPC Codes

机译:基于RS和QC - LDPC码串联的新型高速通信系统

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摘要

In high speed communication, forward error correcting codes have been successfully implemented to offer error-free transmission with high spectral efficiency. The strong candidate for high speed communication system is Low Density Parity Check (LDPC) code. But LDPC code alone will have unwanted error floor. In order to overcome this, a Reed Solomon (RS) code is concatenated with LDPC code. In this paper, we propose an efficient concatenation of RS and structured Quasi Cyclic (QC)-LDPC codes with reduced complexity. We investigate the performance of various decoding algorithms of QC-LDPC code. Their performances in terms of error and complexity are compared. The convergence speed of various decoding methods of LDPC code are analyzed by using the principle of Density Evolution. The one which is more suitable for hardware implementation in terms of structural complexity and latency is identified. This algorithm is chosen as the QC-LDPC decoding algorithm for concatenation. Our simulation results show an improvement of 3dB in Bit Error Rate with concatenation.
机译:在高速通信中,已成功实施前向纠错码以提供具有高谱效率的无错误传输。高速通信系统的强大候选者是低密度奇偶校验(LDPC)代码。但仅限LDPC代码将有不必要的错误楼层。为了克服这一点,REED所罗门(RS)代码与LDPC代码兼容。在本文中,我们提出了对RS和结构化的准循环(QC)-LDPC码的有效级联,复杂性降低。我们调查QC-LDPC代码各种解码算法的性能。比较他们在误差和复杂方面的表演。通过使用密度进化原理来分析LDPC代码的各种解码方法的收敛速度。鉴定了在结构复杂性和延迟方面更适合硬件实现的那个。选择该算法作为替代的QC-LDPC解码算法。我们的仿真结果表明,略微误差速度的3DB提高了串联。

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