On the energy-efficient multidimensional coded modulation for optical transport networks

I. Djordjevic
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引用次数: 2

Abstract

Optical transport networks have been affected by the following problems: (i) limited bandwidth of information infrastructure, (ii) high power consumption, (iii) heterogeneity of network segments, and (iv) security issues. As a solution to the first three problems, the multidimensional signaling has been proposed recently by author. In multidimensional signaling, for the conveyance information over spatial domain multiplexing (SDM) based fibers (few-mode fibers, few-core fibers, few-mode few- core fibers), all available degrees of freedoms, be optical or electrical, have been employed. In electrical domain discrete-time basis functions (such as Slepian sequences) have been employed. In optical domain, both polarization states and spatial modes have been employed. Additionally, the orthogonal division multiplexing (ODM) has been employed in optical domain to enable beyond 1 Pb/s serial optical transport over single-mode fibers. With SDM, the serial optical transport over SDM fibers exceeding 10 Pb/s is achievable. Concepts of statistical physics and information theory have been used in energy-efficient multidimensional signal constellation design. To solve for the security issues problem, the use of FBGs with impulse responses derived from mutually orthogonal Slepian sequences has been advocated.
光传输网络中高能效多维编码调制的研究
光传输网络受到以下问题的影响:(i)信息基础设施的带宽有限,(ii)高功耗,(iii)网段的异构性,以及(iv)安全问题。为了解决前三个问题,作者最近提出了多维信号。在多维信号中,为了在基于空间域多路复用(SDM)的光纤(少模光纤、少芯光纤、少模少芯光纤)上传输信息,使用了所有可用的自由度,无论是光的还是电的。在电域,离散时间基函数(如Slepian序列)被采用。在光学领域,偏振态和空间模式都被采用。此外,正交分复用(ODM)已被应用于光域,在单模光纤上实现超过1pb /s的串行光传输。利用SDM,可以实现超过10 Pb/s的SDM光纤串行光传输。统计物理和信息论的概念被应用于高能效多维信号星座设计中。为了解决安全问题,人们提倡使用具有相互正交睡眠序列脉冲响应的fbg。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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