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A flow admission control in Next Generation Networks with flow aggregate information exchange
- Joung, Jinoo;
- Choi, Jeongmin;
- Min, Seungwook;
- Son, Sunghoon;
- Kim, Younglok;
- 외 3명
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0초록
Next Generation Networks (NGN) is defined as a set of multi-access, multi-transport, multi-service packet-based networks. There exists a variety of Quality of Service (QoS) architectures within NGN, therefore it is common to aggregate and de-aggregate flows at the boundaries of networks. A key question arises regarding the network performance is therefore whether we can guarantee end-to-end performance in this circumstance. In this work an efficient method for calculating end-to-end delay bounds of flows is given, which experience repetitive flow aggregations and de-aggregations. The calculation procedure requires network parameters exchanged among networks in the path as well as the traffic parameters of a flow. It is assumed that such parameters are exchanged according to a standard process recently approved in ITU-T. It is then suggested a simple admission control scheme for flows with strict delay bound requirements. In this scheme aggregation edge nodes store information only per flow aggregate; therefore the scalability is ensured. The delay bound and the admission control scheme are evaluated with simulations in a few realistic scenarios.
키워드
- 제목
- A flow admission control in Next Generation Networks with flow aggregate information exchange
- 저자
- Joung, Jinoo; Choi, Jeongmin; Min, Seungwook; Son, Sunghoon; Kim, Younglok; Song, Jongtae; Kim, Young Boo; Kim, Chul Soo
- 발행일
- 2013-02
- 유형
- Article
- 권
- 52
- 호
- 2
- 페이지
- 363 ~ 374