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 in2012 International Conference on Computer Science and Information Processing (CSIP) pp. 977 - 980
Main Authors Baoliang Li, Shuangyin Ren, Chao Peng, Wenhua Dou
Format Conference Proceeding
LanguageEnglish
Published IEEE 01.08.2012
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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.
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
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  surname: Baoliang Li
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  organization: Sch. of Comput., Nat. Univ. of Defense Technol., Changsha, China
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  surname: Shuangyin Ren
  fullname: Shuangyin Ren
  organization: Sch. of Comput., Nat. Univ. of Defense Technol., Changsha, China
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  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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