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首页> 外文期刊>Journal of Lightwave Technology >Evaluation of Device Cost, Power Consumption, and Network Performance in Spatially and Spectrally Flexible SDM Optical Networks
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Evaluation of Device Cost, Power Consumption, and Network Performance in Spatially and Spectrally Flexible SDM Optical Networks

机译:评估空间和频谱灵活的SDM光网络中的设备成本,功耗和网络性能

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To keep pace with the rapidly increasing network traffic demand anticipated in the coming years, space-division multiplexing (SDM) has become a promising technology for overcoming the limitations of the current wavelength-division multiplexing based optical networks. The key advantage of SDM-based optical transmission is that it increases the network capacity by extending the available spatial dimensions. In this context, several innovative technologies have been proposed to support spatially and spectrally flexible all-optical transmission. One typical technology of this kind is called spatial and spectral super-channel (Spa & Spe SpCh) transmission. Newly designed Spa & Spe SpCh transceivers can support high-speed transmission with excellent spectral efficiency by allowing the optical carriers to be flexibly distributed in both the spatial and spectral domains without guardbands. In addition, SDM-based reconfigurable optical add/drop multiplexers (ROADMs) with varying spatial switching granularities and add/drop ports have been developed to support super-channel transmission (e.g., routing and add/drop). Moreover, ROADMs with spatial lane change support, which can further improve the routing flexibility in the network layer, have also been proposed in recent years. Different modes of implementation of the aforementioned technologies have distinct advantages and disadvantages. These technologies can be combined in various ways to support different types of SDM transmission, leading to variable network performance. In this paper, we evaluate the device cost, power consumption, and network performance of SDM transmission systems based on different implementations of these technologies to serve as a reference for future research.
机译:为了跟上未来几年快速增长的网络流量需求的步伐,空分复用(SDM)已成为一种有前途的技术,可以克服当前基于波分复用的光网络的局限性。基于SDM的光传输的主要优势在于,它通过扩展可用的空间尺寸来增加网络容量。在这种情况下,已经提出了几种创新技术来支持空间和光谱上灵活的全光传输。这种典型的技术称为空间和频谱超级通道(Spa&Spe SpCh)传输。最新设计的Spa&Spe SpCh收发器通过允许光载波灵活地分布在空间域和频谱域中而无需保护带,可以支持具有出色频谱效率的高速传输。另外,已经开发了具有变化的空间交换粒度和分插端口的基于SDM的可重配置光分插复用器(ROADM)以支持超信道传输(例如,路由和分插)。此外,近年来还提出了具有空间车道变更支持的ROADM,其可以进一步提高网络层中的路由灵活性。前述技术的不同实施方式具有明显的优点和缺点。这些技术可以通过各种方式组合起来以支持不同类型的SDM传输,从而导致可变的网络性能。在本文中,我们基于这些技术的不同实现方式来评估SDM传输系统的设备成本,功耗和网络性能,以作为未来研究的参考。

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