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[[Achraf-Doctoral-Dissertation]] CENTER:SIZE(30){COLOR(blue){High-performance, Scalable Nanophotonics On-chip Network for Many-core Systems}} * Thesis drafts [#of25g5e8] ** First draft: [#c16356c4] ** Second draft: [#y3699c4a] ** Third draft: [#aedf6501] ** Fourth draft: [#k50ddc2e] * Abstract [#b34664d9] * Chapter 1:Introduction [[(PDF)>http://aslweb.u-aizu.ac.jp/~m5151161/zxw001/xxx.pdf]] COLOR(red){Due Date:Sep.20} [#ic4cc8fa] -Background --System-On-Chip --Drawback and Limitations of Electronic Network-On-Chip --Potential of Optical Interconnect --Challenges for Optical NoC -Problems and Motivations -Thesis Objectives and Contribution -Thesis Outline * Chapter 2:Optical Network-On-Chip [[(PDF)>http://aslweb.u-aizu.ac.jp/~m5151161/zxw001/xxx.pdf]] COLOR(red){Due Date:Sep.20} [#cc822b92] -Anatomy of an Optical Link --Waveguides --Micro Ring Resonators --Modulator --Detector --Laser Source --Wavelength Division Multiplexing -Optical Network-On-Chip Architecture --Hybrid Electro-Optical --Fully Optical --Other Architectures -Metrics Fro Optical Network-On-Chip * Chapter 3: Related Works [[(PDF)>http://aslweb.u-aizu.ac.jp/~m5151161/zxw001/xxx.pdf]] COLOR(red){Due Date:Sep.25}[#jdd91cf7] -Hybrid Electro-Optical NoCs -Fully Optical NoCs * Chapter 4: Electro-Optcal Router Architecture and Routing Algorithm for Hybrid Electro-Optical NoC [#nfb1bd26] -Overview and Quantitative study of Conventional Hybrid NoCs -Proposed System Architecture --General Overview --Energy Efficient and Non-Blocking Photonic Switch --Light weight Electronic Router --Contention Free Path Setup Algorithm -Evaluation --Evaluation Methodology --Evaluation Under Synthetic Workload --Evaluation Under Realistic Workload -Summary * Chapter 5: QoS Management and Wavelength-Selective Routing Algorithm for Fully Optical PNoC [#hd8144ff] - Proposed Architecture --General Overview --Data Plane --Control Plane - Design Space Exploration -QoS Management - Evaluation Results --Performance and Energy Evaluation Under Synthetic Workload --Performance Evaluation and Energy Under Realistic Workload --Complexity Comparison -Summary * Chapter 6: [#n1508e69] * Chapter 7: Conclusion and Future Work [#g9061239] ---- Last update: Wednesday, Sep.9 (Achraf)
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[[Achraf-Doctoral-Dissertation]] CENTER:SIZE(30){COLOR(blue){High-performance, Scalable Nanophotonics On-chip Network for Many-core Systems}} * Thesis drafts [#of25g5e8] ** First draft: [#c16356c4] ** Second draft: [#y3699c4a] ** Third draft: [#aedf6501] ** Fourth draft: [#k50ddc2e] * Abstract [#b34664d9] * Chapter 1:Introduction [[(PDF)>http://aslweb.u-aizu.ac.jp/~m5151161/zxw001/xxx.pdf]] COLOR(red){Due Date:Sep.20} [#ic4cc8fa] -Background --System-On-Chip --Drawback and Limitations of Electronic Network-On-Chip --Potential of Optical Interconnect --Challenges for Optical NoC -Problems and Motivations -Thesis Objectives and Contribution -Thesis Outline * Chapter 2:Optical Network-On-Chip [[(PDF)>http://aslweb.u-aizu.ac.jp/~m5151161/zxw001/xxx.pdf]] COLOR(red){Due Date:Sep.20} [#cc822b92] -Anatomy of an Optical Link --Waveguides --Micro Ring Resonators --Modulator --Detector --Laser Source --Wavelength Division Multiplexing -Optical Network-On-Chip Architecture --Hybrid Electro-Optical --Fully Optical --Other Architectures -Metrics Fro Optical Network-On-Chip * Chapter 3: Related Works [[(PDF)>http://aslweb.u-aizu.ac.jp/~m5151161/zxw001/xxx.pdf]] COLOR(red){Due Date:Sep.25}[#jdd91cf7] -Hybrid Electro-Optical NoCs -Fully Optical NoCs * Chapter 4: Electro-Optcal Router Architecture and Routing Algorithm for Hybrid Electro-Optical NoC [#nfb1bd26] -Overview and Quantitative study of Conventional Hybrid NoCs -Proposed System Architecture --General Overview --Energy Efficient and Non-Blocking Photonic Switch --Light weight Electronic Router --Contention Free Path Setup Algorithm -Evaluation --Evaluation Methodology --Evaluation Under Synthetic Workload --Evaluation Under Realistic Workload -Summary * Chapter 5: QoS Management and Wavelength-Selective Routing Algorithm for Fully Optical PNoC [#hd8144ff] - Proposed Architecture --General Overview --Data Plane --Control Plane - Design Space Exploration -QoS Management - Evaluation Results --Performance and Energy Evaluation Under Synthetic Workload --Performance Evaluation and Energy Under Realistic Workload --Complexity Comparison -Summary * Chapter 6: [#n1508e69] * Chapter 7: Conclusion and Future Work [#g9061239] ---- Last update: Wednesday, Sep.9 (Achraf)
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