• Title/Summary/Keyword: Metro WDM Network

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Ultra high speed and high capacity optical transmission techniques (초고속 대용량 광전송 기술)

  • Kim Geun-Young;Lee Yong-Gi;Song Kil-Ho
    • 한국정보통신설비학회:학술대회논문집
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    • 2002.08a
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    • pp.127-129
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    • 2002
  • ADSL, Metro Ethernet등 가입자에게 넓은 대역폭을 할당하는 기술이 서비스 영역에 적용되고 있음에 따라 이를 원활히 수용할 수 있는 초고속 대용량 기간망 구축기술이 필요하다. 현재 사용되는 기술로는 2.5Gbps 또는 10Gbps의 전송속도를 갖는 수 십 채널을 각각 파장이 다른 광반송파(optical carrier)에 실어 광학적으로 다중화한 뒤 한 가닥의 광섬유를 통해 전송시키는 파장분할 다중화(Wavelength Division Multiplexing: WDM) 기술이 있다. 본 논문에서는 채널 당 전송 속도를 40Gbps로 증가시키거나, 증폭기 이득 대역폭을 확장시켜 채널 수를 증가시켜 수 THz의 전송용량을 수 천 km 전송시키는데 필요한 라만 광증폭기 기술, FEC 기술, 변조포맷, 분산관리(Dispersion management)기술 등의 핵심기술을 소개한다.

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Consolidation of Metro Networks and Access Networks by using Long-reach WDM-PON (장거리 전송 파장분할 다중방식 수동형 광가입자망을 이용한 메트로망과 가입자망 통합 방안)

  • Lee Sang-Mook;Mun Sil-Gu;Kim Min-Hwan;Lee Chang-Hee
    • Journal of the Institute of Electronics Engineers of Korea TC
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    • v.43 no.5 s.347
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    • pp.59-67
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    • 2006
  • We demonstrate bidirectional long-reach 35-channel dense wavelength division multiplexing-passive optical network(DWDM-PON) based on wavelength-locked Fabry-Perot laser diodes (F-P LDs). The mode control of F-P LD enhances output power at decreased the required injection power. We show packet-loss-free transmission in all 70 channels at 125 Mb/s per channel line rate through 70 km of single mode fiber without optical amplifier The DWDM-PON can consolidate a metro network into an access network by bypassing the central offices within its reach. The proposed DWDM-PON can accommodate about 80 subscribers with an EDFA-based broadband light source. Further expansion up to 100 subscribers is possible with a semiconductor-based BLS.

Optical Components for High Speed Optical Communications (대용량 광통신 부품 기술 동향)

  • Baek, Yongsoon
    • Korean Journal of Optics and Photonics
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    • v.24 no.6
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    • pp.297-310
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    • 2013
  • With the explosive growth of internet data traffic due to the FTTH penetration, prevalence of smart devices and cloud network service, the demand for higher bandwidth is ever increasing with the pace of more than 40% annual growth. To accommodate ultra high bandwidth traffic, optical components in each hierarchy have progressed rapidly. WDM has begun to be deployed along with higher bandwidth service in the access network. Next-generation ROADM is under development for efficient network management in the metro network. For long-haul transmission, an advanced modulation scheme based on coherent transmission technology has been adopted to enhance spectral efficiency. In this paper, core components to meet the demands of high speed, high efficiency and low power consumption will be reviewed.