...
首页> 外文期刊>International Journal of Optoelectronic Engineering >Spectral Efficient Coding Schemes in Optical Communications
【24h】

Spectral Efficient Coding Schemes in Optical Communications

机译:光通信中的频谱有效编码方案

获取原文
   

获取外文期刊封面封底 >>

       

摘要

Achieving high spectral efficiency in optical transmissions has recently attracted much attention, aiming to satisfy the ever increasing demand for high data rates in optical fiber communications. Therefore, strong Forward Error Correction (FEC) coding in combination with multilevel modulation schemes is mandatory to approach the channel capacity of the transmission link. In this paper we give design rules on the joint optimization of coding and signal constellations under practical considerations. We give trade-offs between spectral efficiency and hardware complexity, by comparing coding schemes using capacity achieving constellations with bit-interleaved coded modulation and iterative decoding (BICM-ID) against applying conventional square quadrature amplitude modulation (QAM) constellations but employing powerful low complexity low-density parity-check (LDPC) codes. Both schemes are suitable for optical single carrier (SC) and optical orthogonal frequency-division multiplexing (OFDM) transmission systems, where we consider the latter one in this paper, due to well-studied equalization techniques in wireless communications. We numerically study the performance of different coded modulation formats in optical OFDM transmission, showing that for a fiber optical transmission link of 960 km reach the net spectral efficiency can be increased by ≈0.4 bit/s/Hz to 8.61 bit/s/Hz at a post FEC BER of -15 by using coded optimized constellations instead of coded 64-QAM.In this paper we propose a high spectral efficient coded modulation scheme for implementation in future optical communication systems operating at data rates beyond 400 Gb/s. In detail, we adapt the “Turbo Principle” to BICM-ID[8] and combine it with a high-rate outer algebraic code to obtain a post-FEC BER -15, which is a typical demand in optical transponders. Furthermore we give simple design principles for the design of BICM-ID based on the extrinsic information transfer (EXIT) chart analysis[9]. The optical channel is considered to be weakly-nonlinear. Therefore the proposed techniques are also applicable for single-carrier transmission; however we consider OFDM since it appears to be more appropriate for the high order modulation formats and efficient equalization algorithms that are well established in wireless communications.
机译:为了满足光纤通信中对高数据速率的不断增长的需求,近来在光传输中实现高频谱效率已经引起了很多关注。因此,与多级调制方案相结合的强前向纠错(FEC)编码对于接近传输链路的信道容量是必不可少的。在本文中,我们给出了在实际考虑下联合优化编码和信号星座图的设计规则。通过比较使用容量实现星座图和比特交织编码调制和迭代解码(BICM-ID)的编码方案与应用常规平方正交幅度调制(QAM)星座图但采用强大的低复杂度相比,我们可以在频谱效率和硬件复杂度之间进行权衡低密度奇偶校验(LDPC)码。两种方案都适用于光单载波(SC)和光正交频分复用(OFDM)传输系统,由于对无线通信中的均衡技术进行了深入研究,因此我们在本文中考虑后者。我们通过数值研究了不同编码调制格式在光OFDM传输中的性能,结果表明,对于960 km的光纤传输链路,净频谱效率可以以≈0.4 bit / s / Hz的速度增加到8.61 bit / s / Hz。通过使用编码的优化星座而不是编码的64-QAM,将FEC的误码率设为-15。在本文中,我们提出了一种高频谱效率的编码调制方案,用于在数据速率超过400 Gb / s的未来光通信系统中实施。详细地讲,我们将“ Turbo原理”调整为BICM-ID [8],并将其与高速率的外部代数代码相结合,以获得后FEC BER -15,这是光转发器中的典型需求。此外,我们基于外部信息传递(EXIT)图分析给出了BICM-ID设计的简单设计原则[9]。光通道被认为是弱非线性的。因此,所提出的技术也适用于单载波传输。但是,我们考虑OFDM,因为它似乎更适合在无线通信中建立的高阶调制格式和有效的均衡算法。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号