• 제목/요약/키워드: Differentiated Services (DiffServ)

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Differentiated Services Based Admission Control and Multi Path Routing Algorithm for IPv6

  • Farooq, Muhammad Omer;Aziz, Sadia
    • Journal of Information Processing Systems
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    • 제5권2호
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    • pp.97-104
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    • 2009
  • In this paper we propose a Differentiated Services Based Admission Control and Routing Algorithm for IPv6 (ACMRA). The basic DiffServ architecture lacks an admission control mechanism, the injection of more QoS sensitive traffic into the network can cause congestion at the core of the network. Our Differentiated Services Based Admission Control and Routing Algorithm for IPv6 combines the admission control phase with the route finding phase, and our routing protocol has been designed in a way to work alongside DiffServ based networks. The Differentiated Services Based Admission Control and Routing Algorithm for IPv6 constructs label switched paths in order to provide rigorous QoS provisioning. We have conducted extensive simulations to validate the effectiveness and efficiency of our proposed admission control and routing algorithm. Simulation Results show that the Differentiated Services Based Admission Control and Routing Algorithm for IPv6 provides an excellent packet delivery ratio, reduces the control packets' overhead, and makes use of the resources present on multiple paths to the destination network, while almost each admitted flow shows compliance with its Service Level Agreement.

차별화 서비스망을 위한 정책 기반 서비스 품질 관리 모델 (A Policy Based Management Model of Quality of Service for Differentiated Services Networks)

  • 차시호;강영만;조국현
    • 정보처리학회논문지C
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    • 제10C권2호
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    • pp.171-178
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    • 2003
  • 차별화 서비스(DiffServ)는 효율적이며 규모성을 갖는 방법으로 서비스 품질(QoS)을 제공하는 기술이다. 그러나, 현재의 차별화 서비스 규격들은 완전한 QoS 관리 프레임워크와 구현 모델의 제공에는 취약한 실정이다. 본 논문은 차별화 서비스 망의 QoS를 관리하기 위하여 차별화 서비스 정책을 지원하는 정책 기반 차별화 서비스 QoS 관리 모델을 제안한다. 이 모델을 모델-뷰-컨트롤러(MVC) 구조를 따르며, EJB(Enterprise JavaBeans) 기술에 기반을 두고 있다. 우리의 모델에서 상위 레벨 차별화 서비스 QoS 정책들은 XML 스키마를 갖는 유효한 XML 문서들로 표현되고 EJB 기반 정책 서버 내에 하위 레벨 EJB 정책 번들로 변환된다. QoS 정책을 정의하기 위해 필요한 라우팅 형상과 라우터의 역할 정보 검출은 SNMP MIB-II를 사용하고, QoS 정책 분배와 모니터링은 SNMP DiffServ MIB를 사용한다.

Flow-Based QoS Management Architectures for the Next Generation Network

  • Joung, Jin-Oo;Song, Jong-Tae;Lee, Soon-Seok
    • ETRI Journal
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    • 제30권2호
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    • pp.238-248
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    • 2008
  • At the extremes of the complexity-performance plane, there are two exemplary QoS management architectures: Integrated Services (IntServ) and Differentiated Services (DiffServ). IntServ performs ideally but is not scalable. DiffServ is simple enough to be adopted in today' core networks, but without any performance guarantee. Many compromise solutions have been proposed. These schemes, called quasi-stateful IntServ or stateful DiffServ, however, have not attracted much attention due to their inherently compromising natures. Two disruptive flow-based architectures have been recently introduced: the flow-aware network (FAN) and the flow-state-aware network (FSA). FAN's control is implicit without any signaling. FSA's control is even more sophisticated than that of IntServ. In this paper, we survey established QoS architectures, review disruptive architectures, discuss their rationales, and points out their disadvantages. A new QoS management architecture, flow-aggregate-based services (FAbS), is then proposed. The FAbS architecture has two novel building blocks: inter-domain flow aggregation and endpoint implicit admission control.

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3G 네트워크상에서 정책기반 End-to-End QoS 지원을 위한 DiffServ-aware MPLS (Policy-based End-to-End QoS Provision for 3G Networks Using DiffServ-aware MPLS)

  • 최성구;전경구
    • 한국통신학회논문지
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    • 제31권4B호
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    • pp.349-354
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    • 2006
  • 외부 IP 네트워크와 연동하여 다양한 패킷기반 서비스를 제공하는 3G 네트워크 환경에서 서비스의 end-to-end QoS 제공은 중요한 문제이다. 3GPP 진영은 정책기반 네트워크 자원관리 아키텍처를 표준으로 제안하고 있으며, 실제적으로 정책을 수행하는 수단으로 IntServ와 DiffServ의 사용이 권장되고 있다. 본 논문에서는 DiffServ-aware MPLS를 정책 수행 수단으로 사용하는 것을 제안한다. 이 방식을 이용하면, DiffServ에 의해 트래픽의 QoS를 차별적으로 보장하는 것은 물론, MPLS를 통해 다중 경로를 활용할 수 있어 네트워크 자원 이용도를 높일 수 있다. 이러한 장점들은 실시간 트래픽과 비실시간 트래픽이 동시에 서비스되는 환경에서 제안방식을 시뮬레이션 하여 검증하였다.

DiffServ망에서 Assured Services에 대역폭 보장을 제공하는 방법에 관한 연구 (A Study on Bandwidth Assurance for Assured Services in DiffServ Networks)

  • 정상길;곽재승;변옥환;황구연;오창환
    • 한국정보처리학회:학술대회논문집
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    • 한국정보처리학회 2001년도 추계학술발표논문집 (하)
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    • pp.1351-1354
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    • 2001
  • 본 논문에서는 Differentiated Services (DiffServ) 망의 edge 라우터에 적용되는 3 단계 트래픽 제어기 (3 phased traffic conditioner : 3PTC)를 제안하였다. 제안된 3PTC 는 TCP 트래픽의 예약된 대역폭 (reserved rate) 의 차이, UDP/TCP의 상호작용, RTT 및 집합된 트래픽을 구성하는 작은 트래픽 수에 의한 영향을 최소화함으로써, DiffServ 망에서 제공하는 Assured Services 사용자들에게 공정한 대역폭을 보장해 줄 수 있다. 3PTC 는 토큰버킷 단계, 확률결정 단계, 그리고 버퍼관리 단계로 이루어져 있다.

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SIP에서 QoS 제공을 위한 IntServ와 DiffServ의 연동에 관한 연구 (A Study on combination of IntServ and DiffServ for Supporting Qos based on SIP)

  • 이송희;이근호;김정범;김태윤
    • 한국정보과학회:학술대회논문집
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    • 한국정보과학회 2002년도 가을 학술발표논문집 Vol.29 No.2 (3)
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    • pp.598-600
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    • 2002
  • SIP(Session Initiation Protocol) 프로토콜은 인터넷에서 다양한 세션을 위한 시그널링 프로토콜로서 오디오, 비디오 등의 멀티미디어 세션에 주로 사용되고 있다. 또한 망 유지보수 및 관리가 편리하고 다른 시스템과의 확장성 및 유연성이 뛰어나다는 장점을 갖고 있는 반면 기본적으로 Best Effort 서비스만을 지원하는 IP 네트워크에서 QoS(Quality of Service)를 제공하기 때문에 서비스의 품질에 대한 고려가 미약하다. 따라서 본 연구에서는IP 네트워크를 기반으로 하는 SIP에서 QoS를 제공하기 위해 IntServ(Integrated Services)와 DiffServ(Differentiated Services)를 연동한 QoS 메카니즘을 제시한다.

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Multicast Support in DiffServ Using Mobile Agents

  • El Hachimi, Mohamed;Abouaissa, Abdelhafid;Lorenz, Pascal
    • ETRI Journal
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    • 제27권1호
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    • pp.13-21
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    • 2005
  • Many multicast applications, such as video-on-demand and video conferencing, desire quality of service (QoS) support from an underlying network. The differentiated services (DiffServ) approach will bring benefits for theses applications. However, difficulties arise while integrating native IP multicasting with DiffServ, such as multicast group states in the core routers and a heterogeneous QoS requirement within the same multicast group. In addition, a missing per-flow reservation in DiffServ and a dynamic join/leave in the group introduce heavier and uncontrollable traffic in a network. In this paper, we propose a distributed and stateless admission control in the edge routers. We also use a mobile agents-based approach for dynamic resource availability checking. In this approach, mobile agents act in a parallel and distributed fashion and cooperate with each other in order to construct the multicast tree satisfying the QoS requirements.

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Delay-Margin based Traffic Engineering for MPLS-DiffServ Networks

  • Ashour, Mohamed;Le-Ngoc, Tho
    • Journal of Communications and Networks
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    • 제10권3호
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    • pp.351-361
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    • 2008
  • This paper presents a delay-margin based traffic engineering (TE) approach to provide end-to-end quality of service (QoS) in multi-protocol label switching (MPLS) networks using differentiated services (DiffServ) at the link level. The TE, including delay, class, and route assignments, is formulated as a nonlinear optimization problem reflecting the inter-class and inter-link dependency introduced by DiffServ and end-to-end QoS requirements. Three algorithms are used to provide a solution to the problem: The first two, centralized offline route configuration and link-class delay assignment, operate in the convex areas of the feasible region to consecutively reduce the objective function using a per-link per-class decomposition of the objective function gradient. The third one is a heuristic that promotes/demotes connections at different links in order to deal with concave areas that may be produced by a trunk route usage of more than one class on a given link. Approximations of the three algorithms suitable for on-line distributed TE operation are also derived. Simulation is used to show that proposed approach can increase the number of users while maintaining end-to-end QoS requirements.

A Congestion Control Mechanism for Supporting Differentiated Service in Mobile Ad hoc Networks

  • Kim Jin-Nyun;Ha Nam-Koo;Cho Dong-Hoon;Kim Hyun-Sook;Han Ki-Jun
    • 대한전자공학회:학술대회논문집
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    • 대한전자공학회 2004년도 ICEIC The International Conference on Electronics Informations and Communications
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    • pp.143-146
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    • 2004
  • Differentiated services (DiffServ) has been widely accepted as the service model to adopt for providing quality-of­service (QoS) over the next-generation IP networks. There is a growing need to support QoS in mobile ad hoc networks. Supporting DiffServ in mobile ad hoc networks, however, is very difficult because of the dynamic nature of mobile ad hoc networks, which causes network congestion. The network congestion induces long transfer packet delay and low throughput which make it very difficult to support QoS in mobile ad hoc networks. We propose DiffServ module to support differentiated service in mobile ad hoc networks through congestion control. Our DiffServ module uses the periodical rate control for real time traffic and also uses the best effort bandwidth concession when network congestion occurs. Network congestion is detected by measuring the packet transfer delay or bandwidth threshold of real time traffic. We evaluate our mechanism via a simulation study. Simulation results show our mechanism may offer a low and stable delay and a stable throughput for real time traffic in mobile ad hoc networks.

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Differentiated Services에서 TCP의 ECN을 이용한 성능향상에 관한 연구 (Study on TCP ECN's Capability of Improving the Performance of Differentiated Services Architecture)

  • 오종채;정재일
    • 대한전자공학회:학술대회논문집
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    • 대한전자공학회 2000년도 추계종합학술대회 논문집(1)
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    • pp.9-12
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    • 2000
  • Today, QoS is one of the most critical issues in the network research area and Differentiated Services (DiffServ) is considered as the most prominent solution to provide some kinds of service differentiation without introducing any scalability problem. Among DiffServ's approaches, Assured Service (AS) provides some minimal level of QoS guarantee by treating more preferably than traditional Best Effort (BE) traffic and by using different level of drop probabilities within the same AS classes. In this paper, we investigate the ECN's capability of improving overall goodput of the flows and the possibility of resolving the fairness problem among the flows belonging to same class in Differentiated Services architecture.

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