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Projective geometry LDPC codes for ultralong-haul WDM high-speed transmission

机译:投射几何LDPC码用于超长距离WDM高速传输

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摘要

In this letter, we investigate the performance of low-density parity-check (LDPC) codes in long-haul optical communication systems for carrier-suppressed return-to-zero signal format at 40 Gb/s per channel in a wavelength-division-multiplexing environment. We are particularly concerned with high-rate codes based on projective geometries. These codes have large minimum distance and simple iterative decoding algorithms, which makes them good candidates for such high-speed application. We consider iterative decoding based on min-sum algorithm since it requires only simple addition and minimum operations and, as such, is suitable for high-speed optical transmission. Contrary to the common practice of considering the performance of error controlling schemes using the additive white Gaussian noise channel assumption, we consider the performance of the proposed LDPC schemes, taking into account in a natural way all major impairments in long-haul optical transmission such as amplifier spontaneous emission noise, pulse distortion due to fiber nonlinearities, chromatic dispersion or polarization dispersion, crosstalk effects, intersymbol interference, etc.
机译:在这封信中,我们研究了在长距离光通信系统中低密度奇偶校验(LDPC)码在载波分离的归零信号格式下在波分复用中每通道40 Gb / s的性能。复用环境。我们特别关注基于投影几何的高速率代码。这些代码具有较大的最小距离和简单的迭代解码算法,这使其成为此类高速应用程序的理想候选者。我们考虑基于最小和算法的迭代解码,因为它仅需要简单的加法和最少的运算,因此适用于高速光传输。与考虑使用加性高斯白噪声信道假设的差错控制方案的性能的常规做法相反,我们以自然的方式考虑了建议的LDPC方案的性能,并自然地考虑了远程光传输中的所有主要损害,例如放大器自发发射噪声,由于光纤非线性导致的脉冲失真,色散或偏振色散,串扰效应,符号间干扰等。

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