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首页> 外文期刊>Photonics Journal, IEEE >Multidimensional Vector Quantization-Based Signal Constellation Design Enabling Beyond 1 Pb/s Serial Optical Transport Networks
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Multidimensional Vector Quantization-Based Signal Constellation Design Enabling Beyond 1 Pb/s Serial Optical Transport Networks

机译:基于多维矢量量化的信号星座图设计可实现超过1 Pb / s的串行光传输网络

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摘要

In this paper, we propose a hybrid multidimensional coded-modulation (CM) scheme based on a new multidimensional signal constellation design as a solution to limited bandwidth and high energy consumption of information infrastructure. This multidimensional signal constellation, herewith called vector-quantization-based signal constellation design (VQ-SCD), is based on the vector quantization theory. The proposed scheme employs both the electrical basis functions (in the form of the prolate spheroidal wave functions) and the optical basis functions (in the form of polarization and spatial mode states) as optical basis functions. The proposed coded VQ-SCD scheme is the enabling technology for optical serial transport with bit rates exceeding 1000 Tb/s (1 Pb/s). In addition, the CM scheme we proposed allows for the adaptive, elastic, and dynamic allocation of the bandwidth. This fine granularity bandwidth manipulation is envisioned as a part of future software-defined optical networking.
机译:在本文中,我们提出了一种基于新的多维信号星座设计的混合多维编码调制(CM)方案,以解决带宽有限和信息基础设施能耗高的问题。这种多维信号星座图,被称为基于矢量量化的信号星座图设计(VQ-SCD),是基于矢量量化理论的。所提出的方案采用了电基础函数(以扁长球面波函数的形式)和光学基础函数(以偏振态和空间模态的形式)作为光学基础函数。提议的编码VQ-SCD方案是用于比特率超过1000 Tb / s(1 Pb / s)的光串行传输的启用技术。另外,我们提出的CM方案允许带宽的自适应,弹性和动态分配。可以将这种精细的粒度带宽操作视为将来软件定义的光网络的一部分。

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