• Title/Summary/Keyword: Differentiated Services Network

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

  • 오종채;정재일
    • Proceedings of the IEEK Conference
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    • 2000.11a
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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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An Idea, Strategy of Congestion Pricing for Differentiated Services and Forecasting Probability of Access using Logistic Regression Model (차등서비스를 위한 혼잡요금부과의 타당성 검토와 로지스틱 회귀모형을 이용한 인터넷 접속 확률 예측)

  • Ji Seonsu
    • Journal of Korea Society of Industrial Information Systems
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    • v.10 no.1
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    • pp.9-15
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    • 2005
  • Congestion control is an important research area in computer network. In this paper, I provided strategy of congestion pricing with differentiated services. And, suggested forecasting model of access that considered differentiated pricing, delay time, satisfaction using logistic regression. In a forecasting model of access with logistic regression technique, it is shown that coefficient of determination using suggested model is $70.7\%$.

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Providing Differentiated Services through Orthogonal Relationship among Rerouting Mechanisms (Rerouting기법들 간에 Orthogonal 관계를 통한 차별적인 서비스 제공에 관한 연구)

  • Han, Jeong-Su;Jeong, Jin-Uk
    • The KIPS Transactions:PartC
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    • v.9C no.4
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    • pp.505-512
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    • 2002
  • Rerouting mechanisms must be used by connections in order to provide QoS (Quality of service) characterization of services, which provides mean for reliable and efficient transfer of services under fault generating network. Also, user's services can classily according to their QoS characterizations. In this paper, we study classification of user services according to their characterization for providing differentiated services, and propose rerouting mechanisms under fault generating network. For this, we study various rerouting mechanisms including rerouting locus of start (Source Rerouting, Link Rerouting), rerouting timing of start (Immediate Rerouting, Random Rerouting) and their orthogonal relationship, eventually we propose new rerouting mechanisms such as DRIT, DRDT which show higher performance according to priority of services than others. Our simulation shows that rerouting mechanism (DRDT), applied differentiated mechanisms is better performance to provide differentiated service.

SIP6 supporting the Differentiated Call Processing Scheme (차별화된 호 처리 기법을 지원하는 SIP6)

  • 김진철;최병욱;장천현;김기천;한선영
    • Journal of KIISE:Information Networking
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    • v.30 no.5
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    • pp.621-630
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    • 2003
  • In this paper, we implemented SIP protocol that supports IPv6 and differentiated call processing scheme for NGN(Next Regeneration Network). In NGN, SIP processes call signaling among various application services. A softswitch and SIP server must give priority to sensitive services such as Fax, network management and home networking that require a fast call setup time. Also, the support of IPv6 is needed under consideration of All-IP. We proposed differentiated call processing scheme. The differentiated call processing scheme supports differentiated call processing as priority of service class on call processing in SW server We defined three service classes and use the Flow Label field of the IPv6 header for setting service class. Through the performance analysis, we proved that it improves throughput for call message with the high priority. The result of performance analysis demonstrates that differentiated call processing scheme gives better performance for the service requiring a fast session establishment in NGN.

Performance Analysis of Differential Service Model using Feedback Control (피드백제어를 이용한 차등 서비스 모델의 성능 분석)

  • 백운송;양기원;최영진;김동일;오창석
    • The KIPS Transactions:PartC
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    • v.8C no.1
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    • pp.51-59
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    • 2001
  • In order to support various QoS, IETF has proposed the Differentiated Services Model which provides discrimination service according to t the user’s requirements and payment intention intention for each traffic characteristic. This model is an excellent mechanism, which is not too c complicated in terms of the management for service and network model. Also, it has scalability that satisfies the requirement of Differentiated Services. In this paper, We define the Differentiated Services Model using feedback control, propose its control procedure, and analyze its p performance. In conventional model, non-adaptive traffic, such as UDP traffic, is more occupied the network resource than adaptive traffic, such a as TCP traffic. On the other hand, the Differentiated Services Model using feedback control fairly utlizes the network resources and even p prevents congestion occurrence due to its ability of congestion expectation.

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Design and Implementation of Traffic Control System in Differentiated Services Networks (DiffServ 네트워크에서 QoS 보장형 트래픽 제어 시스템 설계 및 구현)

  • 이명섭;김환섭;류명춘;박창현
    • Proceedings of the IEEK Conference
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    • 2002.06a
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    • pp.49-52
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    • 2002
  • QoS support for the Internet traffic becomes an important future requirement of various network devices such as routers and switches. Differentiated Services(Diffserv) is considered as an efficient feasible solution for providing different service characteristics to different classes of network users. IETF Diffserv working group has already defined a general architecture of Diffserv and is extending its detail features. Network vendors also start implementing Diffserv enabled network devices. However, the management of Diffserv is not fully standardized yet. This paper, we present methods of traffic flow control in Diffserv Networks. we have designed a Diffserv Traffic Control system.

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A Study on a Queue Management Scheme for Alleviating the Impact of Packet Size on the Throughput (패킷 크기에 따른 처리율 영향을 완화하는 큐 관리 기법 연구)

  • 이성근
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.6 no.4
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    • pp.552-558
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    • 2002
  • Differentiated services (DiffServ) architecture defines a new framework for the support of quality of service (QoS) in IP-based networks. RIO has received the most attention among all the active queue management mechanisms proposed for assured service in DiffServ environment. The paper proposed the enhanced RIO which could alleviate the impact of flow's packet sire on the realized throughput. The simulation results indicate that this mechanism, when combined with TSW as traffic conditioner, provide better throughput assurance and fair distribution of excess bandwidth independent of packet size of flows in case of well-provisioned network environment.

An Analysis of the Delay and Jitter Performance of DBA Schemes for Differentiated Services in EPONs

  • Choi, Su-Il
    • Journal of the Optical Society of Korea
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    • v.13 no.3
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    • pp.373-378
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    • 2009
  • An Ethernet passive optical network (EPON) is a low-cost, high-speed solution to the bottleneck problem of a broadband access network. This paper analyzes the delay and the jitter performance of dynamic bandwidth allocation (DBA) schemes for differentiated services in EPONs. Especially, the average packet delay and the delay jitter of the expedited forwarding (EF) traffic class are compared, with consideration as to whether a cyclic or an interleaved polling scheme is superior. This performance evaluation reveals that the cyclic polling based DBA scheme provides constant and predictable average packet delay and improved jitter performance for the EF traffic class without the influence of load variations.

A Scheme to Support a Low-delay Multicast Service on Differentiated Services Network (차별화 서비스 망에서 low-delay 멀티캐스트 서비스 제공 방안)

  • 문영성;조승윤;정병철
    • Journal of Internet Computing and Services
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    • v.2 no.2
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    • pp.23-36
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    • 2001
  • To support real-time multicast, the existing DS network may use the EF PHB for transmission, However, because of the dynamic characteristics of the multicast flow and the features of the EF PHB. it is very difficult to make a provision of resources or to manage the network when EF multicast flows increase, Also, the existing LBE PHB can not guarantee the transmission delay bounds required for the real-time multicast traffic, In this paper. a new concept of PHB. namely, low-delay multicast PHB, that may guarantee approximately the per-hop delay is proposed, For the low-delay multicast PHB, router architectures are devised, The queue management algorithm on a low-delay multicast queue and a scheduling method are also devised. This new architecture of the LDM AF class is simple to be implemented.

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Distributed QoS Monitoring and Edge-to-Edge QoS Aggregation to Manage End-to-End Traffic Flows in Differentiated Services Networks

  • Kim, Jae-Young;James Won-Ki Hong
    • Journal of Communications and Networks
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    • v.3 no.4
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    • pp.324-333
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    • 2001
  • The Differentiated Services (Diffserv) framework has been proposed by the IETF as a simple service structure that can provide different Quality of Service (QoS) to different classes of packets in IP networks. IP packets are classified into one of a limited number of service classes, and are marked in the packet header for easy classification and differentiated treatments when transferred within a Diffserv domain. The Diffserv framework defines simple and efficient QoS differentiation mechanisms for the Internet. However, the original Diffserv concept does not provide a complete QoS management framework. Since traffic flows in IP networks are unidirectional from one network point to the other and routing paths and traffic demand get dynamically altered, it is important to monitor end-to-end traffic status, as well as traffic status in a single node. This paper suggests a distributed QoS monitoring method that collects the statistical data of each service class in every Diffserv router and calculates edge-to-edge QoS of the aggregated IP flows by combining routing topology and traffic status. A format modeling of edge-to-edge Diffserv flows and algorithms for aggregating edge-to-edge QoS is presented. Also an SNMP-based QoS management prototype system for Diffserv networks is presented, which validates our QoS management framework and demonstrates useful service management functionality.

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