Network calculus based optical interconnection networks performance analysis model
Optical Interconnection technology has been extensively studied by researchers. Most of these researches mainly focus on the design and optimization of optical devices and system architecture. But, little effort is taken in performing systematic modeling and performance analysis in mathematics. In t...
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Published in | 2012 International Conference on Computer Science and Information Processing (CSIP) pp. 977 - 980 |
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Main Authors | , , , |
Format | Conference Proceeding |
Language | English |
Published |
IEEE
01.08.2012
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Subjects | |
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Abstract | Optical Interconnection technology has been extensively studied by researchers. Most of these researches mainly focus on the design and optimization of optical devices and system architecture. But, little effort is taken in performing systematic modeling and performance analysis in mathematics. In this paper, we propose a performance analysis model for optical interconnection networks based on Network Calculus (NC). All these optical devices, such as drivers, modulators, multiplexers, waveguides, switches, detectors, amplifiers, etc. can be modeled as Latency-Rate (LR) service curves, and the system-level service curve can be derived from the concatenation theorem. Arrive curve can be abstracted from the synthesis or realistic workload. By applying the basic theorems of NC, we can get the end-to-end latency and backlog, which can be used as a guideline for design and optimization of optical interconnection networks. |
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AbstractList | Optical Interconnection technology has been extensively studied by researchers. Most of these researches mainly focus on the design and optimization of optical devices and system architecture. But, little effort is taken in performing systematic modeling and performance analysis in mathematics. In this paper, we propose a performance analysis model for optical interconnection networks based on Network Calculus (NC). All these optical devices, such as drivers, modulators, multiplexers, waveguides, switches, detectors, amplifiers, etc. can be modeled as Latency-Rate (LR) service curves, and the system-level service curve can be derived from the concatenation theorem. Arrive curve can be abstracted from the synthesis or realistic workload. By applying the basic theorems of NC, we can get the end-to-end latency and backlog, which can be used as a guideline for design and optimization of optical interconnection networks. |
Author | Chao Peng Shuangyin Ren Wenhua Dou Baoliang Li |
Author_xml | – sequence: 1 surname: Baoliang Li fullname: Baoliang Li email: libaoliang@nudt.edu.cn organization: Sch. of Comput., Nat. Univ. of Defense Technol., Changsha, China – sequence: 2 surname: Shuangyin Ren fullname: Shuangyin Ren organization: Sch. of Comput., Nat. Univ. of Defense Technol., Changsha, China – sequence: 3 surname: Chao Peng fullname: Chao Peng organization: Sch. of Comput., Nat. Univ. of Defense Technol., Changsha, China – sequence: 4 surname: Wenhua Dou fullname: Wenhua Dou organization: Sch. of Comput., Nat. Univ. of Defense Technol., Changsha, China |
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Snippet | Optical Interconnection technology has been extensively studied by researchers. Most of these researches mainly focus on the design and optimization of optical... |
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SubjectTerms | Backlog End-to-End Latency Mathematical model Network Calculus Optical amplifiers Optical buffering Optical fiber networks Optical Interconnection Networks Optical modulation Optical waveguides Stimulated emission |
Title | Network calculus based optical interconnection networks performance analysis model |
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