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Nonbinary LDPC-Coded Modulation for High-Speed Optical Fiber Communication Without Bandwidth Expansion

机译:无带宽扩展的高速光纤通信的非二进制LDPC编码调制

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We propose a scheme that can attain the same transmission bit rate as the corresponding conventional polarization-division-multiplexed (PDM) quadrature amplitude modulation (QAM) scheme while occupying lower bandwidth and, hence, achieving a higher spectral efficiency. In contrast to the conventional approach, which increases the symbol rate and thus the occupied bandwidth to transmit the redundant symbols due to forward error correction (FEC), the proposed approach expands the underlying signal constellation in size and reduces the FEC code rate accordingly to form a mechanism that can achieve coded transmission without bandwidth expansion. Such a scheme can find applications in scenarios where there exist stringent bandwidth restrictions and bandwidth expansion is not considered as a viable option. Although the idea of constellation expansion in lieu of bandwidth expansion is mainly associated with Ungerboeck's trellis-coded modulation (TCM), our proposed nonbinary low-density parity-check (LDPC)-coded modulation scheme shows that block-coded modulation schemes can also be used with expanded constellations to achieve transmission without bandwidth expansion and without resorting to TCM. Our results reveal that for small to medium constellation sizes, the proposed scheme can preserve bandwidth while not experiencing significant increase in required optical signal-to-noise ratio (OSNR). For large constellation sizes, however, to keep the increase in required OSNR at manageable levels, we propose using controlled bandwidth expansion where constellation expansion and bandwidth expansion are used simultaneously to obtain a balance between the two critical system parameters of bandwidth and required OSNR.
机译:我们提出了一种方案,该方案可在与占用带宽较低的同时,获得与相应的常规偏振分复用(PDM)正交幅度调制(QAM)方案相同的传输比特率,从而获得更高的频谱效率。与常规方法相反,常规方法由于前向纠错(FEC)而增加了符号率,从而增加了传输冗余符号所占用的带宽,而该方法扩展了底层信号星座图的大小,并相应地降低了FEC码率,从而形成了一种无需带宽扩展即可实现编码传输的机制。这种方案可以在存在严格的带宽限制且带宽扩展不被视为可行选择的情况下找到应用。尽管星座扩展代替带宽扩展的想法主要与Ungerboeck的网格编码调制(TCM)相关,但我们提出的非二进制低密度奇偶校验(LDPC)编码调制方案表明,块编码调制方案也可以与扩展星座配合使用,可以实现传输而无需带宽扩展,也无需借助TCM。我们的结果表明,对于中小型星座,所提出的方案可以保留带宽,而不会显着增加所需的光信噪比(OSNR)。但是,对于较大的星座图,为了将所需OSNR的增加保持在可管理的水平,我们建议使用受控带宽扩展,其中同时使用星座图扩展和带宽扩展来获得带宽和所需OSNR的两个关键系统参数之间的平衡。

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