Low Insertion Loss and Non-Blocking Microring-Based Optical Router for 3D Optical Network-on-Chip

With the advent of complex computing applications such as cloud computing and artificial intelligence, the utilization of multicore processors has become one of the best solutions to improve the computation performance. Benefitted from the technologies of silicon-photonic-based communication and thr...

Full description

Bibliographic Details
Main Authors: Pengxing Guo, Weigang Hou, Lei Guo, Qiang Yang, Yifan Ge, Hang Liang
Format: Article
Language:English
Published: IEEE 2018-01-01
Series:IEEE Photonics Journal
Subjects:
Online Access:https://ieeexplore.ieee.org/document/8271872/
id doaj-76398c489ccf44ac91b6c8c9ba75437b
record_format Article
spelling doaj-76398c489ccf44ac91b6c8c9ba75437b2021-03-29T17:31:53ZengIEEEIEEE Photonics Journal1943-06552018-01-0110211010.1109/JPHOT.2018.27960948271872Low Insertion Loss and Non-Blocking Microring-Based Optical Router for 3D Optical Network-on-ChipPengxing Guo0Weigang Hou1Lei Guo2Qiang Yang3Yifan Ge4Hang Liang5School of Computer Science and Engineering, Northeastern University, Shenyang, Liaoning, ChinaSchool of Computer Science and Engineering, Northeastern University, Shenyang, Liaoning, ChinaSchool of Computer Science and Engineering, Northeastern University, Shenyang, Liaoning, ChinaSchool of Computer Science and Engineering, Northeastern University, Shenyang, Liaoning, ChinaSchool of Computer Science and Engineering, Northeastern University, Shenyang, Liaoning, ChinaSchool of Computer Science and Engineering, Northeastern University, Shenyang, Liaoning, ChinaWith the advent of complex computing applications such as cloud computing and artificial intelligence, the utilization of multicore processors has become one of the best solutions to improve the computation performance. Benefitted from the technologies of silicon-photonic-based communication and three-dimensional (3-D) integration, the 3-D optical network-on-chip (3-D ONoC) has attained extensive attentions as a new multicore architecture, providing high communication bandwidth, as well as low transmission delay and power consumption. As the main part of 3-D ONoCs, the structures of topology and optical router (OR) heavily affect the transmission efficiency of the whole network. In this paper, we propose a mesh-based topology and a novel cost-efficient 6 × 6 nonblocking OR structure. Different from the traditional 3-D ONoC topology that needs seven-port ORs to realize the data transmission, the OR mentioned in our solutions only consumes six ports. This improvement effectively reduces the number of optical switching elements and cross waveguides in ORs, lowering the power consumption and hardware costs of the system. The simulation analysis based on the modified Noxim simulator demonstrates that our method performs well in terms of mitigating the OR- and network-level insertion loss, shrinking the floorplan/chip area and improving the network scalability over benchmarks.https://ieeexplore.ieee.org/document/8271872/Multi-core platform3D ONoCcost efficiencynon-blocking optical router
collection DOAJ
language English
format Article
sources DOAJ
author Pengxing Guo
Weigang Hou
Lei Guo
Qiang Yang
Yifan Ge
Hang Liang
spellingShingle Pengxing Guo
Weigang Hou
Lei Guo
Qiang Yang
Yifan Ge
Hang Liang
Low Insertion Loss and Non-Blocking Microring-Based Optical Router for 3D Optical Network-on-Chip
IEEE Photonics Journal
Multi-core platform
3D ONoC
cost efficiency
non-blocking optical router
author_facet Pengxing Guo
Weigang Hou
Lei Guo
Qiang Yang
Yifan Ge
Hang Liang
author_sort Pengxing Guo
title Low Insertion Loss and Non-Blocking Microring-Based Optical Router for 3D Optical Network-on-Chip
title_short Low Insertion Loss and Non-Blocking Microring-Based Optical Router for 3D Optical Network-on-Chip
title_full Low Insertion Loss and Non-Blocking Microring-Based Optical Router for 3D Optical Network-on-Chip
title_fullStr Low Insertion Loss and Non-Blocking Microring-Based Optical Router for 3D Optical Network-on-Chip
title_full_unstemmed Low Insertion Loss and Non-Blocking Microring-Based Optical Router for 3D Optical Network-on-Chip
title_sort low insertion loss and non-blocking microring-based optical router for 3d optical network-on-chip
publisher IEEE
series IEEE Photonics Journal
issn 1943-0655
publishDate 2018-01-01
description With the advent of complex computing applications such as cloud computing and artificial intelligence, the utilization of multicore processors has become one of the best solutions to improve the computation performance. Benefitted from the technologies of silicon-photonic-based communication and three-dimensional (3-D) integration, the 3-D optical network-on-chip (3-D ONoC) has attained extensive attentions as a new multicore architecture, providing high communication bandwidth, as well as low transmission delay and power consumption. As the main part of 3-D ONoCs, the structures of topology and optical router (OR) heavily affect the transmission efficiency of the whole network. In this paper, we propose a mesh-based topology and a novel cost-efficient 6 × 6 nonblocking OR structure. Different from the traditional 3-D ONoC topology that needs seven-port ORs to realize the data transmission, the OR mentioned in our solutions only consumes six ports. This improvement effectively reduces the number of optical switching elements and cross waveguides in ORs, lowering the power consumption and hardware costs of the system. The simulation analysis based on the modified Noxim simulator demonstrates that our method performs well in terms of mitigating the OR- and network-level insertion loss, shrinking the floorplan/chip area and improving the network scalability over benchmarks.
topic Multi-core platform
3D ONoC
cost efficiency
non-blocking optical router
url https://ieeexplore.ieee.org/document/8271872/
work_keys_str_mv AT pengxingguo lowinsertionlossandnonblockingmicroringbasedopticalrouterfor3dopticalnetworkonchip
AT weiganghou lowinsertionlossandnonblockingmicroringbasedopticalrouterfor3dopticalnetworkonchip
AT leiguo lowinsertionlossandnonblockingmicroringbasedopticalrouterfor3dopticalnetworkonchip
AT qiangyang lowinsertionlossandnonblockingmicroringbasedopticalrouterfor3dopticalnetworkonchip
AT yifange lowinsertionlossandnonblockingmicroringbasedopticalrouterfor3dopticalnetworkonchip
AT hangliang lowinsertionlossandnonblockingmicroringbasedopticalrouterfor3dopticalnetworkonchip
_version_ 1724197623011737600