• Title/Summary/Keyword: TCP 전송률

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Resource Allocation Algorithm for Throughput Enhancement in IEEE 802.11e (IEEE 802.11e의 전송률 향상을 위한 자원할당 알고리듬)

  • Joung, Soo-Kyoung;Park, In-Kap
    • Journal of the Institute of Electronics Engineers of Korea CI
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    • v.47 no.4
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    • pp.63-70
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    • 2010
  • In IEEE 802.11e system providing differentiated services, there exist some problems as follows; collision probability increase due to the increase in the number of nodes by employing CSMA/CA transmission mode, transmission speed declining tendency towards the worst of it, which is caused by different transmission mode and decrease of TCP transmission rate as the result of the link occupancy by UDP when TCP shares the link with UDP by the TCP’s flow control characteristic. In this thesis, the initial minimum and maximum CW are set differently according to the number of connected nodes in the network to avoid collisions and TXOP is adjusted according to the channel state, in which ACs with low priority but better channel state will get gradually more chances to transmit leading to optimal channel capacity. Also, by allowing higher priority for ACK frames which control the TCP transmission, the flow control becomes better because that reduces the channel occupancy by UDP flow, and by this, fair transmission is obtained from the result of the more fair transmission and active resource allocation.

A Study on Improving TCP Performance in Wireless Network (무선 네트워크에서 TCP성능향상을 위한 연구)

  • Kim, Chang-Hee
    • Journal of Digital Contents Society
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    • v.10 no.2
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    • pp.279-289
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    • 2009
  • As the TCP is the protocol designed for the wired network that packet loss probability is very low, because TCP transmitter takes it for granted that the packet loss by the wireless network characteristics is occurred by the network congestion and lowers the transmitter's transmission rate, the performance is degraded. In this article, we suggest the newly improved algorithm using two parameters, the local retransmission time value and the local retransmission critical value to the BS based on the Snoop. This technique adjusts the base stations local retransmission timer effectively according to the wireless link status to recover the wireless packet loss rapidly. We checked that as a result of the suggested algorithm through various simulations, A-Snoop protocol improve more the wireless TCP transmission rate by recovering the packet loss effectively in the wireless link that the continuous packet loss occur than the Snoop protocol.

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Adaptive Bulk Retransmission Mechanism for Wireless TCP (무선 TCP를 위한 효율적인 재전송 기법)

  • Kang, Jae-Sin;Hong, Choong-Seon;Lee, Dae-Yong
    • Proceedings of the Korea Information Processing Society Conference
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    • 2003.11b
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    • pp.939-942
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    • 2003
  • TCP Westwood[1]는 송신측에 수신된 ACK를 통해서 대역폭을 계산하여 데이터를 전송하는 기법이다. 위성망 같이 손실률이 매우 높은 환경을 위해 TCP Westwood에서는 기존의 Bu]k Retransmission[2] 기법을 보안 하였다. 하지만 Bulk 재 전송 기법은 불필요한 데이터도 함께 재전송하기 때문에 성능이 저하되게 된다. 이 논문에서는 재 전송 패킷의 수를 적절히 조절하는 Adaptive Bulk Retransmission 기법을 제안하고자 한다.

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Implementation of Streaming Service Using the Real-Time Rate Control Scheme (실시간 전송률 조절 기법을 이용한 스트리밍 서비스의 구현)

  • Lee Heesang;Lee Sunhun;Lee Jungmin;Choi Woongchul;Rhee Seung Hyong;Chung Kwangsue
    • Proceedings of the Korean Information Science Society Conference
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    • 2005.07a
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    • pp.361-363
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    • 2005
  • 최근 컴퓨터 기술의 발전과 더불어 급속하게 발전하는 네트워크 기술이 실생활에 보급되고 네트워크를 통한 멀티미디어 데이터의 교환이나 전송과 같은 서비스들이 활성화 되면서 멀티미디어 데이터가 점점 대용량화 다양화되고 있다. 기존의 멀티미디어 서비스는 정해진 서버로부터 미리 데이터를 받아서 보는 다운로드 서비스가 대부분이었고 스트리밍 서비스라 할지라도 사용자의 기호나 원하는 요구사항에는 미치지 못 하였다. 지금까지 스트리밍 데이터를 전송 하는 프로토콜로 주로 UDP(User Datagram Protocol)를 사용하였다. 하지만 UDP는 혼잡제어를 하지 않으며 현재 인터넷의 주요 트래픽인 TCP(Transmission Control Protocol) 트래픽은 혼잡제어를 한다. 그래서 UDP에 의한 스트리밍 서비스는 TCP 트래픽의 전송률을 저하시키며 더 나아가 네트워크의 전체의 성능을 저하시키는 요인이 될 수 있다. 본 논문에서는 IETF(Internet Engineering Task Force)에서 제정한 실시간 스트리밍 데이터 서비스를 위한 표준인 RTP(Real-Time Transport Protocol)/RTCP(Real-Time Transport Control Protocol)를 적용하여 RTCP의 정보를 가지고 현재 네트워크 상태를 판단하고 스트리밍 서비스를 할 때 데이터의 전송률은 TCP 친화적인 전송률로 조절하는 스트리밍 서비스를 구현하였다.

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Transmission Rate Control Techniques for UMTS network streaming using TFRC (지연변화가 큰 환경에서의 TFRC를 사용한 스트리밍 시의 전송률 산출법 개선 기법)

  • Han, Seung-Jin;Han, Sang-Beom;Yoo, Hyuck
    • Proceedings of the Korean Information Science Society Conference
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    • 2005.11a
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    • pp.502-504
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    • 2005
  • TFRC는 전송률 산출을 위해 Loss Rate와 RTT정보를 TCP-equation에 적용한다. 그러나 무선망과 같이 지연 변화가 큰 환경의 경우 RTT 값이 정확한 망상황을 표현한다고 할 수 없다. 모바일 단말의 경우 움직임에 따라 지연정보는 계속 변화하게 되며 순방향, 역방향 지연정보간의 차이도 발생하게 된다. 본 논문에서는 지연 변화가 큰 환경에 맞는 지연정보인 One-way Delay를 사용하여 TFRC의 전송률 예측방법을 개선한다. One-way Delay 정보를 이용하여 Average Weighting을 거쳐 TCP-equation에 적용하여 전송률을 산출함으로써 정확한 Bandwidth의 예측이 가능함을 시뮬레이션을 통해 나타낸다.

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Energy Efficient Congestion Control Scheme in Ad-hoc Networks (Ad-hoc 통신망의 에너지 효율적인 혼잡 제어 기법)

  • Cho, Nam-Ho;Chung, Kwang-Sue
    • Journal of KIISE:Information Networking
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    • v.33 no.5
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    • pp.369-379
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    • 2006
  • In recent years, there have been many researches about Ad-hoc Networks which is available to communicate freely between mobile devices by using multi-hop without any support of relay base or access point. TCP that used the most widely transport protocol in the Internet repeats packet loss and retransmission because it increases congestion window size by using reactive congestion control until packet loss occurs. As a result of this, energy of mobile device is wasted unnecessarily. In this paper, we propose TCP-New Veno in order to improve the energy efficiency of mobile device. According to the state of network, the scheme adjusts appropriate size of congestion window. Therefore, the energy efficiency of mobile device and utilization of bandwidth are improved by the scheme. From the simulation by using ns-2, we could see more improved energy efficiency with TCP-New Veno than those with TCP in Ad-hoc Networks.

A Real-Time Multimedia Data Transmission Rate Control Using Neural Network Prediction Model (신경 회로망 예측 모델을 이용한 실시간 멀티미디어 데이터 전송률 제어)

  • Kim, Yong-Seok;Kwon, Bang-Hyun;Chong, Kil-To
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.30 no.2B
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    • pp.44-52
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    • 2005
  • This paper proposes a neural network prediction model to improve the valid packet transmission rate for the QoS(Quality of Service) of multimedia transmission. The Round Trip Time(RTT) and Packet Loss Rate(PLR) are predicted using a neural network and then the transmission rate is decided based on the predicted RTT and the PLR. The suggested method will improve the transmission rate since it uses the rate control factors corresponding to time of data is being transmitted, while the conventional one uses the transmission rate determined based on the past informations. An experimental set-up has been established using a Linux PC system, and the multimedia data are transmitted using UDP protocol in real time. The valid transmitted packets are about 5% higher than the one in the conventional TCP-Friendly congestion control method when the suggested algorithm was applied.

Implementation of TCP-Friendly Internet Video Phone (TCP-Friendly Internet Video Phone의 구현)

  • 이소현;최태욱;박성호;강정구;정기동
    • Proceedings of the Korean Information Science Society Conference
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    • 2001.04a
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    • pp.433-435
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    • 2001
  • 인터넷상에서 화상전화를 구현할 경우, 대용량의 멀티미디어 데이터의 전송은 네트웍 congestion의 원인이 될 수 있다. 이러한 congestion이 일어날 경우, congestion avoidance 알고리즘을 적용하는 TCP 데이터는 스스로 전송률을 줄이게 되므로, congestion 정책을 사용하지 않는 UDP 패킷과 같은 데이터와 함께 전송될 경우, TCP 데이터에 불리하게 된다. 이때, UDP 패킷 데이터에 TCP와 유사한 방법의 congestion avoidance 알고리즘을 적용하여 이를 해결할 수 있는데, 이것은 TCP-friendly Adaptation 알고리즘이다. 본 논문에서는 인터넷 화상전화의 구현에 대해 기술하고 인터넷 환경에서 화성전화를 사용할 때에 congestion을 control 하기 위해서, 그 출력 대역폭을 네트웍 상태에 따라 TCP와 유사한 방식으로 조절하는 TCP-friendly Adaptation 알고리즘을 적용한다.

Mean Transfer Time for SCTP and TCP in Single-homed Environment considering Packet Loss (싱글홈드 환경에서 패킷 손실을 고려한 SCTP와 TCP의 평균 전송 시간)

  • Kim, Ju-Hyun;Lee, Yong-Jin
    • 대한공업교육학회지
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    • v.33 no.1
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    • pp.233-248
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    • 2008
  • Stream Control Transmission Protocol(SCTP) is a new transport protocol that is known to provide improved performance than Transmission Control Protocol(TCP) in multi-homing environment that is having two and more IP addresses. But currently single-homed computer is used primarily that is having one IP address. To identify whether mean transfer time for SCTP is faster that for TCP in single-homed environment considering packet loss, we make up real testbed regulating the bandwidth, delay time and packet loss rate on router and observe the transfer time. We write server and client applications to measure SCTP and TCP mean transfer time by C language. Analysis of these experimental results from the testbed implementation shows that mean transfer time of SCTP is not better than performance of TCP in single homed environment exceptional case. Main reasons of performance are that SCTP compared to TCP stops transmitting data by timeout and data transmission is often delayed when SACK congestion happens. The result of study shows that elaborate performance tuning is required in developing a new SCTP module or using a implemented SCTP module.

A study on improving TCP performance in mobile communication systems with a high transmission error (전송오류가 큰 이동통신 환경에서 TCP 성능 개선에 관한 연구)

  • 장재신
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.28 no.9B
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    • pp.813-822
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    • 2003
  • Conventional TCPs are designed to work efficiently on wired network where any transmission errors rarely take place. However, the probability of transmission error in a wireless network is much higher than in a wired network, due to pass loss, multipath fading, and many kinds of interference. There were many researches on preventing the degradation of TCP performance in these wireless networks with bad channel condition. One of these researches is the SNOOP protocol which is link-layer solution for achieving high throughput of TCP. However, this SNOOP protocol is apt to retransmit some TCP segments unnecessarily, which could cause some increased traffic loads in a wireless network. In this paper, we propose a new algorithm to prevent the unnecessary retransmission of TCP segments and to achieve increased performance of TCP.