• Title/Summary/Keyword: ATM cell

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The Performance Evaluation of an ATM Switch supporting AAL Type 2 cell Switching and The FPGA Implementation of AAL Type 2 Switch Module (AAL 유형 2 셀 스위칭을 지원하는 ATM 스위치의 성능 평가 및 AAL 유형 2 스위치 모듈의 FPGA 구현)

  • Sonh Seung-il
    • Journal of Internet Computing and Services
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    • v.5 no.3
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    • pp.45-56
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    • 2004
  • In this paper, we propose ATM switch architecture including ALL type 2 switch which can efficiently transmit low-bit rate data, even if the network has many endpoints. We simulate the architecture of ATM switch fabric that is modeled in computer program and analyze the performance according to offered loads. ATM switch proposed in this paper can support cell switching for all types of m cells which consist of ALL type 1. ALL type 2, ALL type 3/4 and ALL type 5 cells. We propose two switch fabric methods; One supports the ALL type 2 cell processing per input port, the other global ALL type 2 cell processing for every input port. The simulation results show that the latter is superior to the former. But the former has a merit for easy implementation and extensibility. In this paper, the AAL Type 2 switch module which adapts the former method is designed using VHDL language and implemented in FPGA chip. The designed AAL Type 2 switch module operates at 52MHz. The proposed ATM switch fabric is widely applicable to mobile communication, narrow band services over ATM network and wireless ATM as well as general ATM switching fabric.

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CLR Performance Improvement of Random Traffic in the Wireless ATM Access Architecture (무선 ATM 접속구조에서 랜덤 트래픽의 셀 손실율 성능개선)

  • 김철순;이하철;곽경섭
    • Journal of Korea Multimedia Society
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    • v.6 no.7
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    • pp.1239-1244
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    • 2003
  • In this paper, we analyzed cell loss rate performance for random traffic sources in wireless ATM(Asynchronous Transfer Mode) access architecture, which consists of access node and wireless channel. Applying queueing model to cell level at access node and considering burst error characteristics in wireless channel, we derived a formula about the cell loss rate of the random traffic in the wireless ATM access architecture. We also applied FEC(Forward Error Correction) schemes to improve the cell loss rate of random traffic. When we applied FEC schemes in the wireless ATM access architecture, we confirmed that the concatenated code provides the most superior performance compared to any other codes.

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UPC Schemes on the Frame Relay/ATM Interworking in ATM Networks (FR/ATM 연동에서의 UPC 방식)

  • Nam, Yun-Seok;Park, Won-Sik
    • The Transactions of the Korea Information Processing Society
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    • v.6 no.11
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    • pp.3108-3115
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    • 1999
  • Frame relay needs UPC function for the multiplexed logical connections to prevent malicious user traffic from incoming to network, to guarantee the QoS of conformed user traffic, and to protect the normal operation of network system. On the FR/ATM interworking in ATM networks, the UPC may be conducted either by cell-based ATM UPC or frame-based FR UPC. Frames come into and traverse ATm networks by segmentation to ATM cells. Of course, FR QoS should be guaranteed in spite of segmentation and reassembly in ATM networks. In this paper, we compared the QoS of cell-based ATM UPC and frame-based FR UPC in terms of analysis and simulation in case of ingress of excess traffic over negotiated traffic parameters at user-to-network interface. Also we studied frame-based UPC schemes including window-based FR UPC and frame-based VSA which is an ATM UPC algorithm recommended by ITU-T. We described introductions to frame relay including frame structure and FR/ATM interworking, FR traffic parameters and their relationship, comparison of FR QoS between frame-based FR UPC and cell-based ATM UPC, comparison of FR UPC schemes, necessities of egress traffic control, and conclusions.

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Performance Analysis of an Multiplexer for Guaranteed QoS in ATM Networks (ATM망에서 보장된 QoS을 위한 다중화기의 성능분석)

  • 음호식;이명호
    • Journal of the Korea Society of Computer and Information
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    • v.5 no.4
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    • pp.82-89
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    • 2000
  • This study analyzes the cell loss probability of an ATM multiplexer with real time and non-real time bursty traffics. It is assumed that an ATM multiplexer with loss priority control for the analysis. The loss priority control uses the CLP Reld of cell header. For easy analysis and less computation. the multiplexed traffic of the ATM multiplexer was modeled by the MMDP. The ATM multiplexer is simulated by the MMDP/MMDP/l/K queueing system. From the above results, The connection admission of an ATM multiplexer with loss priority control is determined by the cell loss probability with low priority as well as the size of threshold buffer. Therefore, to increase the statistical multiplexing gain it will be good to utilize the loss priority control in order.

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The Method of Handoff Using CLP on the WATM Network (무선 ATM에서 CLP를 이용한 핸드오프 방식)

  • 김준배;황재문;강경식
    • Journal of the Korea Society of Computer and Information
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    • v.6 no.3
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    • pp.44-49
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    • 2001
  • In general. requirements for QoS are different according to the type of services in wireline and wireless ATM, and real-time video service is more sensitive to cell transmission delay than to cell loss. Existing handoff schemes emphasizing prevention of cell loss had limitations in cell transmission delay to satisfy QoS. In this paper, a novel scheme to transmit ATM cells with low CLP (when CLP = 0) prior to others and discarding cells with high CLP (when CLP = 1) in ATM cell header among cells to be forwarded during handoffs in real-time VBR service is proposed. The proposed scheme is proven to be suitable for the satisfaction of QoS and appropriate for fast handoffs by giving high CLP value to less meaningful MPEG frames through simulations.

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A study on ATM Switch supporting AAL Type 2 Cell processing (AAL Type 2 셀 처리를 지원하는 ATM 스위치에 관한 연구)

  • Park, Noh-Sik;Sonh, Seung-Il
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.28 no.3B
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    • pp.209-216
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    • 2003
  • In this paper, we propose ATM switch structure including AAL type 2 switch which can efficiently transmit low-bit rate data, even if the network has many endpoints. We simulate the architecture of ATM switch fabric that is modeled in computer program and analyze the performance according to offered loads. ATM switch proposed in this paper can support cell switching for all types of AAL cells which consist of AAL type 1, AAL type 2, AAL type 3/4, and AAL type 5 cells. We propose two switch fabric methods; One supports the AAL type 2 cell processing per input port, the other global AAL type 2 cell processing for every input port. The simulation results show that the latter is superior to the former. But the former has a merit for easy implementation and extensibility. The proposed ATM switch fabric is widely applicable to mobile communication, narrow band services over ATM network and wireless ATM as well as general ATM switching fabric.

A Study on the ATM Cell Transmission in the Satellite Network (위성망에서 ATM 셀 전송에 관한 연구)

  • 김신재;김동규;김병균;최형진
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.21 no.10
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    • pp.2687-2702
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    • 1996
  • It is desirable that the implementation of next generation information infrastructure is the Integrated Network combining the satellite and the terrestrial network. The application of the ATM network being the dominant infrastrure of terrestrial network to the satellite network is being studied variously. Considering these concepts, this paper analyzes due to ATM transport via satellite, evaluates the degradation of QoS and proposes reliable method of ATM cell transport via satellite. Because ATM is investigated with the optical fiber which is almost error free characteristics, the practical application of ATM transport via satellite essentially need the channel coding(FEC:Forward Error Correction) to enhance BER performance. But using the FEC coding, satellite link has burst error characteristics which evoke severe performance degradation fo ATM QoS. Therefore in satellite link, we analyze burst error characteristics using experimental results of computer simulation. Then to compensate these characteristics, based on this analysis and HEC dual mode algorithm we propose various interleaver structures(Block interleaver, Intra interlever, and Inter-Intra interleaver) to improve cell transmission QoS. We execute performance evaluations of iterleaver structures by computer simulation.

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Performance Evaluation of ATM Switch Structures with AAL Type 2 Switching Capability

  • Sonh, Seung-Il
    • Journal of information and communication convergence engineering
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    • v.5 no.1
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    • pp.23-28
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    • 2007
  • In this paper, we propose ATM switch structure including AAL type 2 switch which can efficiently transmit low-bit rate data, even if the network has many endpoints. We simulate the architecture of ATM switch fabric that is modeled in computer program and analyze the performance according to offered loads. ATM switch proposed in this paper can support cell switching for all types of AAL cells which consist of AAL type 1, AAL type 2, AAL type 3/4, and AAL type 5 cells. We propose two switch fabric methods; One supports the AAL type 2 cell processing per input port, the other global AAL type 2 cell processing for every input port. The simulation results show that the latter is superior to the former. But the former has a strong point for easy implementation and extensibility. The proposed ATM switch fabric architecture is applicable to mobile communication, narrow band services over ATM network.

A scheme to minimize transmission delay during handoff for rt-VBR service in the wireless ATM Networks (무선 ATM에서 핸드오프 동안 실시간 VBR 서비스를 위한 전송 지연의 최소화 방안)

  • Kim, Jun-Bae;Jang, Dong-Hyeok;Lee, Seon-Suk;Lee, Jae-Hong;Kim, Seung-Hwan;Gwon, O-Seok;Park, Jin-Su
    • The KIPS Transactions:PartC
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    • v.9C no.2
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    • pp.277-282
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    • 2002
  • In general, requirements for QoS are different according to the type of services in wire-line and wireless ATM networks, and real-time video service is more sensitive to cell transmission delay than to cell loss. Existing handoff schemes emphasizing prevention of cell loss had limitations in cell transmission delay to satisfy QoS. In this paper, a novel scheme to transmit ATM cells with low CLP(when CLP = 0) prior to others and discarding cells with high CLP(when CLF = 1) in ATM cell header among cells to be forwarded to new base station during handoffs in real-time VBR service is proposed. The proposed scheme is proven to be suitable for the satisfaction of QoS of real-time VBR service and appropriate for fast handoffs by giving high CLP value to less meaningful MPEG frames through simulations.

A Practical Connection Admission Control Scheme in ATM Networks (ATM망에서 실용적 연결수락제어 기법)

  • Kang, Koo-Hong;Park, Sang-Jo
    • Journal of KIISE:Information Networking
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    • v.29 no.2
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    • pp.181-187
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    • 2002
  • Connection admission control(CAC), which decides whether or not to accept a new call request, is one of the most Important preventive congestion control techniques in asynchronous transfer mode(ATM) networks. To develop a practical CAC scheme, first we propose a "Modified Cell Loss Probability MP${\nu}"$, which is based on "Virtual Cell Loss Probability P${\nu}"$, taking into account mean burst duration of input traffic source and buffer size in ATM networks. MP${\nu}"$ computes more accurate cell loss probability than P${\nu}"$ without increasing computational complexity, since P${\nu}"$ is formulated simply form the maximum and the average cell rate of input traffic. P${\nu}"$ is overestimated as compared to the real cell loss probability when the mean burst duration is relatively small to the buffer capacity. Then, we Propose a CAC scheme, based on "Modified Virtual Bandwidth(MVB)" method, which may individualize the cell loss probabilities in heterogeneous traffic environments. For the proposed approach, we define the interference intensity to identify interferences between heterogeneous traffic sources and use it as well as MP${\nu}"$ to compute MVB. Our approach is well suitable for ATM networks since it provides high bandwidth utilization and guarantees simple and real time CAC computation for heterogeneous traffic environments.heterogeneous traffic environments.