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BER performance due to irregularity of row-weight distribution of the parity-check matrix in irregular LDPC codes for 10-gb/s optical signals

机译:由于10 gb / s光信号的不规则LDPC码中奇偶校验矩阵行权重分布不规则而导致的BER性能

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摘要

Forward-error correction (FEC) coding is theoretically investigated to improve bit-error-rate (BER) performance in a 10-Gb/s optical transmission system using randomly irregular low-density parity-check (LDPC) codes, regular LDPC codes, and the Reed-Solomon (RS) (255,239) code as a comparison. The irregular LDPC codes has different row-weight variances of a parity-check matrix from 10.9 to 18.8 and a row-weight mean of 60. Simulation is carried out under various conditions including the impairment factors such as dispersion, polarization-mode dispersion (PMD), and fiber nonlinearities. Results suggest that the irregular LDPC code with a low row-weight variance (=10.9) generally has better performance for the most impairment factors except for the factor of dispersion. On the other hand, for the factor of dispersion the irregular LDPC code performs better with a high row-weight variance (=18.8). A specific LDPC code can overcome the impairment limits in a deployed link.
机译:从理论上研究了前向纠错(FEC)编码,以提高10 Gb / s光传输系统中的误码率(BER)性能,该系统使用随机不规则的低密度奇偶校验(LDPC)码,常规LDPC码,与Reed-Solomon(RS)(255,239)代码进行比较。不规则LDPC码的奇偶校验矩阵的行权重方差从10.9到18.8,行权重平均值为60。在各种条件下进行仿真,包括诸如色散,偏振模色散(PMD)等减损因子。 )和光纤非线性。结果表明,具有低行权方差(= 10.9)的不规则LDPC码通常对大多数损害因素(色散因素除外)具有更好的性能。另一方面,对于分散因素,不规则的LDPC码在行权方差高(= 18.8)时表现更好。特定的LDPC代码可以克服已部署链路中的损害限制。

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