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ATM photonic switching systems with Tera-bits/sec throughput

Research Project

Project/Area Number 06452245
Research Category

Grant-in-Aid for General Scientific Research (B)

Allocation TypeSingle-year Grants
Research Field 情報通信工学
Research InstitutionSophia University

Principal Investigator

OZEKI Takeshi  Sophia Univ., Science & Technology, Professor, 理工学部, 教授 (40245791)

Co-Investigator(Kenkyū-buntansha) KUDO Tetuhiko  Sophia University, Science & Technology, Assistant, 理工学部, 助手 (30053713)
Project Period (FY) 1994 – 1995
Project Status Completed (Fiscal Year 1995)
Budget Amount *help
¥7,000,000 (Direct Cost: ¥7,000,000)
Fiscal Year 1995: ¥1,700,000 (Direct Cost: ¥1,700,000)
Fiscal Year 1994: ¥5,300,000 (Direct Cost: ¥5,300,000)
Keywordsphotonics / ATM / switching / Optical Amplifier / Cell Buffer Memory / Cell Loss / Optical Circuit Synthesis / OIC / Switching / Optical Amplifier / Cell Buffer Memory / Cell Loss / Optical Circuit Synthesis / OIC
Research Abstract

Photonic ATM switching systems should be in service at the beginning of the 21st century. For this target, photonic AMC is believed as the most reasonable approach, which is a kind of connector to realize a huge scale of ATM switching system by combinig AHM (ATM Virtual Circuit Handling Module). Our proposal of Multi-fold OFDM Self-Routing ATM Switching System is promising for photnic AMC.[1, 2] One of the important issue in realizing photonic AMC is how to realize photnic ATM cell buffer memory. In this project, one chip photonic ATM cell buffer memory is proposed and demonstrated in a mock discrete model[3].
The basic structure of one chip cell buffer is based on PLC hybrid integration module including a photonic loop, WDM DEMUX and wavelength converters. An AWG DEMUX on PLC and three sets of wavelength converters using 2.5 Gb/s DFB/APD tranciever modules were combined to the mock discrete model of cell buffer, which demonstrated three WDM ATM cells storage at bit rate of 150 Mb/s. Tunable Laser Source HP8168B was used for input photonic ATM cell generation. We also analyzed Multihop Photonic AMC to propose Mach-Zenhder Lattice optical circuits for wavelength routers, which is improved in passband characteristics than AWG routers[5].

Report

(3 results)
  • 1995 Annual Research Report   Final Research Report Summary
  • 1994 Annual Research Report
  • Research Products

    (3 results)

All Other

All Publications (3 results)

  • [Publications] Y.Akiyama,T.Kudo and T.Ozeki: ""Photonic Tera-bit/sec ATM Switching Systems using Two-Folf OFDM Self-Routing"" Technical Digest of OEC'94. 14E-11. 256-257 (1994)

    • Related Report
      1994 Annual Research Report
  • [Publications] N.Araki,T.Kudo and T.Ozeki: ""Er^<+3>-doped Fiber Amplifier Gain Equalization using Variable Panda-Rotational Optical Filter over 40nm Spectrum Width"" Technical Digest of OEC'94. 15c1-5. 374-375 (1994)

    • Related Report
      1994 Annual Research Report
  • [Publications] K.Harada,T.Kudo and T.Ozeki,: ""Polarization Dependent Gain of Er^<+3> doped Fiber Amplifiers"" Technical Digest of OFC'95. 192-194 (1995)

    • Related Report
      1994 Annual Research Report

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Published: 1994-04-01   Modified: 2016-04-21  

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