• Title/Summary/Keyword: 역다중화기

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Narrowband 1${\times}$16 DMUX using multiple recording of photorefractive LiNbO$_3$ crystal (광굴절 LiNbO$_3$ 결정의 다중 기록 특성을 이용한 협대역 1${\times}$16 역다중화기)

  • An, Jun-Won;Kim, Nam;Lee, Kwon-Yeon;Lee, Hyun-Jae;Seo, Wan-Seok
    • Proceedings of the Optical Society of Korea Conference
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    • 2000.02a
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    • pp.290-291
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    • 2000
  • 광전달망에서 전송용량의 폭발적인 수요 증가에 대처하기 위한 최적의 솔루션으로 파장분할다중화(WDM: wavelength division multiplexing) 방식이 도입되고 있으며, 그 적용 영역 또한 장거리 시외망, 단거리 시내망부터 인터넷 트래픽 전달용 백본망을 위한 핵심기술로 정착될 것으로 예측하고 있다. WDM 광전송 방식은 기존의 시분할 다중(TDM: time division multiplexing) 방식이 갖는 동기식(SDH: synchronous digital hierarchy) 전송기술의 한계를 보완할 수 있으며, 신호의 다중화 및 역다중화 구성체계가 단순하고, 입력 광신호에 대한 신호속도나 형태등의 제한도 없기 때문에, 기존의 동기식 전송에 비해 전송용량을 쉽게 확장할 수 있다는 장점을 가지고 있다. (중략)

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An Implementation of The Embedded-Based Multi Mode Receiver Module & Demuxer (임베디드용 멀티모드 방송 수신 모듈 및 역다중화기 설계 및 구현)

  • Kwon, KiWon;Kim, SeongJun;Park, SeHo;Park, YoungSuk;Hong, SukGun
    • IEMEK Journal of Embedded Systems and Applications
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    • v.6 no.2
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    • pp.62-67
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    • 2011
  • In this paper, Multi Mode Receiver Module is designed in one H/W module for Multi-mode Digital Broadcasting. Multi mode means Digital TV, Mobile TV and Digital Radio on the Broadcasting. and T-DMB, DAB(+), ISDB-T and DVB-T standard. Our Module can receive various broadcasting signal such as ISDB-T, DVB-T and DAB. The Multi mode Receiver Module & demuxer was implemented using the one SoC Chip has good performances to receive the multi mode signals as well as standard interface such as SPI, to connect the main CPU Unit.

Analysis of structure and properties of wavelength demultiplexing using photopolymer phase grating (포토폴리머 위상 격자를 이용한 파장 역다중화 구조 및 특성 분석)

  • Choi, Won-Jun;An, Jun-Won;Kim, Nam;Lee, Kwon-Yeon
    • Korean Journal of Optics and Photonics
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    • v.13 no.1
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    • pp.44-50
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    • 2002
  • A new wavelength demultiplexing scheme using holographic volume phase grating formed in photopolymer is proposed and demonstrated. Through the analysis and experiments of the design parameters such as wavelength selectivity, operating spectral range, spatial channel distance and spatial intensity distribution of each channel, we proved that the proposed demultiplexing scheme is promising for wavelength division multiplexing (WDM). From the experimental results, the 3 dB bandwidth of 0.21nm and the crosstalk level of 26 dB for a 0.8 nm channel spacing are observed.

The Effect of Crosstalk and Loss on the Scaliability and Transmission Performance of Optical Cross-Connect Nodes (광상호분배기 노드에서 누화와 손실을 고려한 전송성능 및 확장성 분석)

  • Lee, Sang-Rok;Seo, Wan-Seok;Yoon, Byeong-Ho;Lee, Sung-Un;Lee, Jong-Hyun
    • Journal of the Korean Institute of Telematics and Electronics S
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    • v.36S no.11
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    • pp.15-21
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    • 1999
  • The scalability of optical cross-connect nodes is analyzed based on the limiting factor of transmission performance. The limiting factors considered are ASE noise accumulation and gain saturation in the optical amplifiers, and crosstalk in both wavelength multiplexers/demultiplexers and optical switches. When the wavelength multiplexer/demultiplexers crosstalk is lower than 25dB, Power Penalty is below 1dB for the cascaded transmission of 10 nodes with 4 input/output ports. When 10Gbps signals are transmitted through nodes with 4 and 16 input/output Ports, performance degradation due to switch crosstalk is dominant compared to that due to ASE noise accumulation if the switch crosstalk is larger than 30dB and 45dB, respectively. For the single stage transmission of 10Gbps signal with 21dB fiber link loss, the maximum loss of optical cross-connect nodes must be under 34dB to achieve the BER of $10^{-12}$.

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