• Title/Summary/Keyword: 광 버퍼

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WDM Optical Buffer Technologies (WDM 광 버퍼 기술)

  • 신서용
    • Proceedings of the Optical Society of Korea Conference
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    • 2000.08a
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    • pp.132-137
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    • 2000
  • 오늘날 광전송 시스템 및 광 네트워크는 WDM을 기반으로 형성되어 가고 있으며 따라서 광 스위칭 역시 WDM 기술에 기반을 둘 것이고 광 스위칭을 위해 필수적인 광 버퍼도 WDM 신호를 처리할 수 있어야 한다. 본 논문에서는 현재까지 발표된 주요 WDM 광 버퍼를 기능과 구조에 따라 분류하고 각 버퍼의 특징과 장단점을 분석하며 이를 바탕으로 새롭게 제안한 전광학적 WDM 출력버퍼 및 WDM 다채널 동시처리 광 버퍼에 대해 소개하고자 한다.

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A novel all optical WDM output buffer (새로운 구조의 전광학적 WDM 출력 버퍼)

  • 곽용석;송용훈;전창훈;정제명;신서용
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.25 no.6A
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    • pp.862-869
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    • 2000
  • In a switch routing system, buffers are indispensible to prevent signal collision during routing process. For a photonic switching system, optical buffers are also indispensible if the system requires an active routing rather than a simple optical cross-connect(OXC). To cope with WDM technologies in optical comminication systems in these days, photonic switching system also has to deal with WDM signals. Therefore, optical buffers needed in a switching system has to be routed to the same output. For the receiver to recognize these signals separately, parallel WDM signals during rearrangement process. In this paper, we propose a novel all optical WDM output buffer whose structure, hardware, SNR and BER characteristics are improved a lot comparing with those of previously reported ones. From the analysis of the proposed buffer, the new buffer can hold 255 WDM cells keeping BER of 10-9 as long as a contrast ratio(gain on-off ratio) of optical gate(semiconductor optical amplifier) nside the buffer is 30dB.

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A Study on the Loss Probability and Dimensioning of Multi-Stage Fiber Delay Line Buffer (다단 광 지연 버퍼의 손실률과 크기에 관한 연구)

  • 김홍경;이성창
    • Journal of the Institute of Electronics Engineers of Korea TC
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    • v.40 no.10
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    • pp.95-102
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    • 2003
  • The buffering is a promising solution to resolve the contention problem in optical network. we study the packet loss probability and the dimensioning of optical buffer using a Fiber Delay Line for variable length packet. In this paper, we study the relation between the granularity and the loss of FDL buffer in Single-Stage FDL buffer and propose the Single-Bundle Multi-Stage FDL buffer. The Multi-Stage FDL buffer is too early yet to apply to the current backbone network, considering the current technology in view of costs. but we assume that the above restriction will be resolved in these days. The appropriate number of delay and pass line for a dimensioning is based on a amount of occupied time by packets. Once more another multi-stage FDL buffer is proposed, Split-Bundle multi-stage FDL buffer. The Split-Bundle ms-FDL buffer is more feasible for a FDL buffer structure, considering not only a size of switching matrix but also a bulk of switching element. its feasibility will be demonstrated from a loss probability.

Performance Analysis of Time Division Multiplexed Optical Output Buffers (시간 분할 다중합 광 출력 버퍼의 성능 분석)

  • 정준영;고광철;정제명
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.28 no.9B
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    • pp.751-759
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    • 2003
  • We analyze the performances, such as the cell loss probability(CLR) and the cell delay time, of time division multiplexed(TDM) optical output buffers using traveling delay lines or delay-line loops for buffering. Since traveling delay lines used for buffering are superior over delay-line loops in terms of simplicity and signal quality, they were used in a conventional TDM optical output buffer. However, the latter is more flexible than the former in that the cell storage time is adjustable by changing the recirculating times of a cell in the loops. So we propose a novel TDM optical output buffer using delay-line loops for buffering. We show that the proposed TDM optical output buffer can reduce the number of buffering unit required to achieve a CLR of less than 10$^{-9}$ . When the number of buffering unit is sufficiently large, we show that both TDM optical output buffers have same cell delay time characteristic.

Hybrid Buffer Structured Optical Packet Switch with the Limited Numbers of Tunable Wavelength Converters and Internal Wavelengths (제한된 수의 튜닝 가능한 파장변환기와 내부파장을 갖는 하이브리드 버퍼 구조의 광 패킷 스위치)

  • Lim, Huhn-Kuk
    • Journal of Internet Computing and Services
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    • v.10 no.2
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    • pp.171-177
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    • 2009
  • Optical packet switching(OPS) is a strong candidate for the next-generation internet, since it has a fine switching granularity at the packet level for providing flexible bandwidth, and provides seamless integration between WDM layer and IP layer. Optical packet switching have been studied in two categories: OPS in synchronous and OPS in asynchronous networks. In this article we are focused on contention resolution of OPS in asynchronous networks. The hybrid buffer have been addressed, to reduce packet loss further as one of the alternative buffer structures for contention resolution of asynchronous and variable length packets, which consists of the FDL buffer and the electronic buffer. The OPS design issue for the limited number of TWCs and internal wavelengths is important in the aspect of switch cost and resource efficiency. Therefore, an hybrid buffer structured optical packet switch and its scheduling algorithm is presented for considering the limited number of TWCs and internal wavelengths, for contention resolution of asynchronous and variable length packets. The proposed algorithm could lead to the packet loss improvement compared to the legacy LAUC-VF algorithm with only the FDL buffer.

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Deduction of TWCs and Internal Wavelengths Needed for a Design of Asynchronous OPS System with Shared or Output FDL Buffer (공유형 혹은 아웃풋 광 지연 선로 버퍼를 갖는 비동기 광패킷 스위칭 시스템 설계를 위해 필요한 가변 파장 변환기 및 내부 파장 개수의 도출)

  • Lim, Huhnkuk
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.39B no.2
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    • pp.86-94
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    • 2014
  • Optical packet switching (OPS) is being considered as one of the switching technologies for a future optical internet. For contention resolution in an optical packet switching (OPS) system, the wavelength dimension is generally used in combination with a fiber delay line (FDL) buffer. In this article, we propose a method to reduce the number of tunable wavelength converters (TWCs) by sharing TWCs for a cost-effective design of an asynchronous OPS system with a shared or an output FDL buffer. Asynchronous and variable-length packets are considered in the OPS system design. To investigate the number of TWCs needed for the OPS system, an algorithm is proposed, which searches for an available TWC and an unused internal wavelength, as well as an outgoing channel. This algorithm is applied to an OPS system with a shared or an output FDL buffer. Also, the number of internal wavelengths (i.e., the conversion range of the TWC) needed for an asynchronous OPS system is presented for cost reduction of the OPS system.

Buffer-based Service Differentiation Scheme in Optical Burst Switching Networks (광 버스트 스위칭 네트워크에서 버퍼 기반의 서비스 차별화 방식)

  • Paik, Jung-Hoon;Lee, Kyou-Ho
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.17 no.12
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    • pp.2835-2842
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    • 2013
  • In this paper, service differentiation scheme using optical buffer that is reduced in size with slow-light technology in optical burst switching networks is presented. In suggested scheme, each outport has buffer to store high-class burst only in case that all its wavelengths are occupied. When all wavelengths are being used, a new arriving high-class burst goes into the buffer and waits until a burst is serviced. As soon as a burst is serviced with a wavelength, the high-class burst at buffer is allocated to the free wavelength. In case that low-class burst is arriving under the same situation, it is not stored at the buffer but discarded. An analytical model is derived to analyze the performance of the suggested scheme and compare its performance with the conventional scheme such as preemption and deflection as well as no service differentiations.

WDM output shared buffer (WDM 출력 공유 버퍼)

  • 곽용석;신서용
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.26 no.4B
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    • pp.410-417
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    • 2001
  • 본 논문에서는 여러개의 WDM 채널을 동시에 처리할 수 있는 새로운 출력 공유버퍼를 제시했다. 분석을 통해 만약 버퍼에서 사용되는 광 도파로열 격자의 누화 값이 -33dB이하이며, ,BER 10-9의 시스템 성능을 만족하면서 8개 이상의 WDM 체널을 동시에 버퍼링할 수 있음을 보였다.

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Extended Light Buffers for Efficient Visibility Operations (효율적인 가시성 연산을 위한 확장된 광 버퍼)

  • Kim, Ja-Hee;Kwon, Bomjun;Kim, Dae Seoung;Shin, Sung Yong
    • Journal of the Korea Computer Graphics Society
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    • v.2 no.2
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    • pp.1-9
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    • 1996
  • It is important issue to increase the efficiency of visibility operations in rendering since the most of rendering time is spent for performing visibility operations. In this paper, we present light buffers of area light sources, which provide efficient visibility operations from the sources. The light buffers are extended to support visibility operations not originated from the sources. We also explore their applications such as shadow generation, ray tracing and radiosity. Our experimental results show that the light buffers support more efficient visibility operations than the previously developed data structures including BSP trees, linear grids, and octrees.

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Realization of All-Optical WDM Buffer Using Wavelength Routing (파장 라우팅 방식을 이용한 전광 WDM 버퍼 구현)

  • Choi Hoon;Eom Jin Seob
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.30 no.3A
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    • pp.153-159
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    • 2005
  • In this paper, we propose All-Optical WDM Buffer System for resolving the contention of Packets in Optical Packet Switching System. The proposed system consists of tunable wavelength converters based on SOA, N×N AWG, and fiber delay lines. This structure can reduce ASE and cross-talk noise because the contending packets are sent and buffered through each different path determined by a wavelength routing. We also performed buffering experiment for two contending WDM optical pulses with each 50ns width, and found that the contending problem is resolved well.