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A systematic approach for achieving low bit error rate of LDPC decoder using MWD algorithm

机译:一种使用MWD算法实现LDPC解码器低误码率的系统方法

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One of the most significant barriers for using Low Density Parity Check (LDPC) codes in many wireless communication system and magnetic storage devices is the bit error rate floor phenomena with their complex message passing iterative algorithm. LDPC codes are mostly used in communication system because of its outstanding performance achievement. There are various decoding algorithm for LDPC decoder. In this paper, we presented the mathematical analysis of Minimum Weight Decoding (MWD) algorithm and its error rate performance over Additive White Gaussian Noise (AWGN) channel. A comparison of bit error rate performance over signal to noise ratio (dB) is carried out for different codes such as hamming code, BCH code and LDPC code. This paper shows bit error performance of decoder using minimum weight decoding algorithm. The main significance of this paper is that it shows efficient performance of Minimum Weight Decoding (MWD) algorithm based LDPC Decoder. We presented three classes of codes (1) hamming code, (2) BCH code and (3) LDPC Codes. We demonstrate the effectiveness of LDPC decoder over other two code decoders for the code rate 1/2 and block length (16,8) which is tarnished for its error floors.
机译:在许多无线通信系统和磁存储设备中使用低密度奇偶校验(LDPC)代码的最大障碍之一是其复杂消息传递迭代算法的误码率最低限度现象。 LDPC码由于其出色的性能成就而被广泛用于通信系统中。 LDPC解码器有多种解码算法。在本文中,我们介绍了最小权重解码(MWD)算法的数学分析及其在加性高斯白噪声(AWGN)信道上的误码率性能。针对诸如汉明码,BCH码和LDPC码的不同码,进行了误码率性能与信噪比(dB)的比较。本文展示了使用最小加权解码算法的解码器的误码性能。本文的主要意义在于,它展示了基于最小权重解码(MWD)算法的LDPC解码器的高效性能。我们介绍了三类代码:(1)汉明码,(2)BCH码和(3)LDPC码。我们证明了LDPC解码器相对于其他两个编码解码器的有效性,其码率1/2和块长度(16,8)因其错误基底而失去光泽。

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