Fully-elastic multi-granular network with space/frequency/time switching using multi-core fibres and programmable optical nodes.

Fully-elastic multi-granular network with space/frequency/time switching using multi-core fibres and programmable optical nodes.
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DOI:
10.1364/oe.21.008865
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发表时间:
2013-04
期刊:
影响因子:
3.8
通讯作者:
N. Amaya;M. Irfan;G. Zervas;R. Nejabati;Dimitra Simeonidou;J. Sakaguchi;W. Klaus;B. Puttnam;T. Miyazawa;Y. Awaji;Naoya Wada;Ian D. Henning
N. Amaya;M. Irfan;G. Zervas;R. Nejabati;Dimitra Simeonidou;J. Sakaguchi;W. Klaus;B. Puttnam;T. Miyazawa;Y. Awaji;Naoya Wada;Ian D. Henning
中科院分区:
物理与天体物理2区
文献类型:
--
作者:
N. Amaya;M. Irfan;G. Zervas;R. Nejabati;Dimitra Simeonidou;J. Sakaguchi;W. Klaus;B. Puttnam;T. Miyazawa;Y. Awaji;Naoya Wada;Ian D. Henning

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我们提出了第一个弹性、空分复用和多粒度网络,该网络基于两个7核MCF链路和四个可编程光节点,能够利用超过6000倍带宽粒度的空间、频率和时间维度交换流量。结果表明,在所有信道上都有良好的端到端性能,功率损失在0.75分贝到3.7分贝之间。
We present the first elastic, space division multiplexing, and multi-granular network based on two 7-core MCF links and four programmable optical nodes able to switch traffic utilising the space, frequency and time dimensions with over 6000-fold bandwidth granularity. Results show good end-to-end performance on all channels with power penalties between 0.75 dB and 3.7 dB.