• Title/Summary/Keyword: TCP throughput

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Throughput analysis of RTP-TCP coexistence network (RTP-TCP가 공존하는 네트워크의 Throughput 분석)

  • 김석후;채현석;최명렬
    • Proceedings of the Korean Information Science Society Conference
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    • 2002.10e
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    • pp.682-684
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    • 2002
  • 본 논문에서는 RTP와 TCP가 공존하는 네트워크에서 RTP 패킷의 크기, interval,전송라인의 대역폭, Queue의 크기, delay의 변화에 따라 throughput의 특징에 대하여 알아보기 위해서 ns(network simulator)를 이용하여 RTP, TCP_Reno, TCP_Vegas로 구성된 네트워크를 구성하고 시뮬레이션을 통해서 throughput의 특징 및 원인을 분석했다.

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TCP Throughput Analysis in the Portable Internet Wireless Environment with Consideration of Mobility (휴대 인터넷 무선 환경에서 이동성을 고려한 TCP 처리율 분석)

  • 원기섭;조용범;노재성;조성준
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2004.05b
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    • pp.399-403
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    • 2004
  • In this paper, we have analyzed the TCP throughput of Portable Internet system in 2.3GHz wireless environment with considering user's mobility speed. As the Portable Internet uses large cells compared to wireless LAM and supports user's nobility, we have adapted different wireless channel model to derive the TCP throughput of the system. We have assumed wireless channel is Rayleigh fading channel and the channel is modeled as two-state Markov model with which user's nobility speed can be considered by varying transition matrix of the model. from the simulation results, we have known that higher TCP throughput under the slow fading than under the fast fading. Because the TCP throughput is closely related to the sender's congestion control, the more congestion control is done by the sender, the lower TCP throughput we have. The more congestion control is caused in the sender under the fast fading than the slow fading so the lower TCP throughput is resulted in the fast fading environment.

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Novel Uplink Congestion Control Method for TCP Throughput Enhancement (TCP 성능 향상을 위한 새로운 상향링크 혼잡 제어 기법)

  • Sohn, Kyungho;Kim, Han-Seok;Kwak, Dongho;Roy, Abhishek;Kim, Dongsook;Kim, Young Yong
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.42 no.1
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    • pp.153-156
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    • 2017
  • In this paper, we propose a novel uplink congestion control scheme, which enhances downlink TCP throughput by improving response time of TCP acknowledgements without TCP modification. Through the experimental results, it is manifested that the proposed scheme is able to achieve better downlink TCP throughput.

A Wireless TCP Protocol for Throughput Enhancement in Wireless Broadband (휴대 인터넷에서 처리율 향상을 위한 Wireless TCP 프로토콜)

  • Moon, Il-Young
    • Proceedings of the KIEE Conference
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    • 2006.04a
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    • pp.57-59
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    • 2006
  • In this paper, we investigate the wireless TCP protocol for throughput improvement in wireless Broadband. If the burst error duration of a wireless link is significantly long, retransmissions of lost packets by Snoop TCP are fulfilled mainly not by the receipt of duplicate acknowledgement (DUPACKs) but by local timer expiration. With the proposed scheme, Snoop TCP recovers packet losses fast by shortening the interval of local retransmissions based on the channel status. From the simulation results, we can show that the proposed scheme can improve TCP throughput considerably.

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TCP Throughput Effective Vertical Handoff Decision Scheme for Heterogeneous Wireless Networks (이기종 무선망에서의 TCP 성능 기반 수직적 핸드오프 결정 방안)

  • Seok, Woo-Jin;Choi, Young-Hwan;Kim, Sang-Ha
    • Journal of KIISE:Information Networking
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    • v.34 no.6
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    • pp.505-513
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    • 2007
  • Vertical handoff is a new type of handoff in wireless networks. It is issued when a mobile node moves over overlapping wireless networks with each proving a different access bandwidth, transmission latency, and coverage. By issuing the vertical handoff, the mobile node can obtain better network bandwidth. In the sense of TCP throughput, however, the vertical handoff does not always produce positive performance gain, so sometimes it is better for the mobile node to stay at lower bandwidth providing network rather than to select and move to higher bandwidth providing network. In this paper, we analyze TCP throughput for vertical handoff, and propose a new handoff decision scheme which can estimate TCP throughput at the moment of vertical handoff. Based on the estimation, a mobile node can decide to issue vertical handoff to produce better TCP throughput, and we verify the results by simulations.

Enhanced Snoop Protocol for Improving TCP Throughput in Wireless Links (무선 링크에서 TCP 처리율 향상을 위한 Enhanced Snoop 프로토콜)

  • Cho Yong-bum;Won Gi-sup;Cho Sung-joon
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.30 no.6B
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    • pp.396-405
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    • 2005
  • Snoop protocol is one of the efficient schemes to compensate TCP packet loss and enhance TCP throughput in wired-cum-wireless networks. However, Snoop protocol has a problem; it cannot perform local retransmission efficiently under the bursty-error prone wireless link. In this paper, we propose Enhanced Snoop(E-Snoop) protocol to solve this problem of Snoop protocol. With E-Snoop protocol, packet losses can be noticed by receiving new ACK packets as well as by receiving duplicate ACK packets or local retransmission timeout. Therefore, TCP throughput can be enhanced by fast recognition of bursty packet losses and fast local retransmissions. From the simulation results, E-Snoop protocol can improve TCP throughput more efficiently than Snoop protocol and can yield more TCP improvement especially in the channel with high packet loss rates.

Analytic Throughput Model for Network Coded TCP in Wireless Mesh Networks

  • Zhang, Sanfeng;Lan, Xiang;Li, Shuang
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • v.8 no.9
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    • pp.3110-3125
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    • 2014
  • Network coding improves TCP's performance in lossy wireless networks. However, the complex congestion window evolution of network coded TCP (TCP-NC) makes the analysis of end-to-end throughput challenging. This paper analyzes the evolutionary process of TCP-NC against lossy links. An analytic model is established by applying a two-dimensional Markov chain. With maximum window size, end-to-end erasure rate and redundancy parameter as input parameters, the analytic model can reflect window evolution and calculate end-to-end throughput of TCP-NC precisely. The key point of our model is that by the novel definition of the states of Markov chain, both the number of related states and the computation complexity are substantially reduced. Our work helps to understand the factors that affect TCP-NC's performance and lay the foundation of its optimization. Extensive simulations on NS2 show that the analytic model features fairly high accuracy.

TCP Buffer Tuning based on MBT for High-Speed Transmissions in Wireless LAN (무선 랜 고속전송을 위한 최대버퍼한계 기반 TCP 버퍼튜닝)

  • Mun, Sung-Gon;Lee, Hong-Seok;Choo, Hyun-Seung;Kong, Won-Young
    • Journal of Internet Computing and Services
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    • v.8 no.1
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    • pp.15-23
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    • 2007
  • Wireless LAN (IEEE 802.11) uses traditional TCP for reliable data transmission, But it brings the unintentional packet loss which is not congestion loss caused by handoff, interference, and fading in wireless LAN. In wireless LAN, TCP experiences performance degradation because it consumes that the cause of packet loss is congestion, and it decrease the sending rate by activating congestion control algorithm. This paper analyzes that correlation of throughput and buffer size for wireless buffer tuning. We find MBT (Maximum Buffer Threshold) which does not increase the throughput through the analysis, For calculation of MBT, we experiment the throughput by using high volume music data which is creased by real-time performance of piano. The experiment results is shown that buffer tuing based on MBT shows 20.3%, 21.4%, and 45.4% throughput improvement under 5ms RTT, 10ms RTT, and 20ms RTT, respectively, comparing with the throughput of operation system default buffer size, In addition, we describe that The setting of TCP buffer size by exceeding MBT does not have an effect on the performance of TCP.

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Estimation of TCP Throughput Fairness Ratio under Various Background Traffic (다양한 백그라운드 트래픽이 존재하는 경우의 TCP 공정성 비율 측정)

  • Lee, Jun-Soo;Kim, Ju-Kyun
    • Journal of Korea Multimedia Society
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    • v.11 no.2
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    • pp.197-205
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    • 2008
  • TCP packets occupy over 90% of current Internet traffic thus understanding of TCP throughput is crucial to understand Internet. Under the TCP congestion regime, heterogeneous flows, i.e., flows with different round-trip times (RTTs), that share the same bottleneck link will not attain equal portions of the available bandwidth. In fact, according to the TCP friendly formula, the throughput ratio of two flows is inversely proportional to the ratio of their RTTs. It has also been shown that TCP's unfairness to flows with longer RTTs is accentuated under loss synchronization. In this paper, we show that, injecting bursty background traffic may actually lead to new type of synchronization and result in unfairness to foreground TCP flows with longer RTTs. We propose three different metrics to characterize traffic burstiness and show that these metrics are reliable predictors of TCP unfairness.

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Drop Policy Considering Performance of TCP in Optical Burst Switching Networks (Optical Burst Switching Network에서 TCP 성능을 고려한 Drop Policy)

  • 송주석;김래영;김현숙;김효진
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.29 no.2B
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    • pp.203-209
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    • 2004
  • In OBS networks, the burst dropping due to contention significantly affects the performance of TCP, but existing drop policies have not considered this problem and researches related to TCP have been mainly studied on burst assembling. We propose the drop policy considering retransmission of TCP to improve the performance of TCP in OBS networks. The proposed drop policy is the Retransmission Count-based DP that regards retransmission count of bursts as priority when it selects dropping burst. This paper evaluates the performance of RC-based DP model and general DP model using ns-2. The metrics of performance evaluation are TCP throughput, maximum sequence number of received TCP packets and drop rate of packet as simulation time increases.