DOI QR코드

DOI QR Code

액티브 네트워크에서 SNMP 정보기반 라우팅을 이용한 핸드오프 QoS 향상 기법

QoS controlled handoff by SNMP information-based routing in active network

  • 장한이 (고려대학교 대학원 컴퓨터학과) ;
  • 박수현 (국민대학교 컴퓨터·응용과학부) ;
  • 백두권 (고려대학교 컴퓨터학과)
  • 발행 : 2002.12.01

초록

mobile IP는 단순히 이동성을 지원하는 것만을 목표로 제안되었기 때문에, 새로운네트워크로의 연결만을 보장할 뿐, 핸드오프 후의 QoS는 보장하지 못한다. mobile IP에서QoS는 이동 환경에서 멀티미디어 서비스나 실시간 서비스 제공시 매우 중요시되는 문제로, 핸드오프에 의한 지연과 밀접히 연관되어있다. 본 논문에서는 이러한 핸드오프 지연 문제를해결하기 위해, 액티브 네트워크에서의 정보기반 라우팅에 키워드 관리방법을 추가한 SNMP 정보기반 라우팅을 제시하고, 이를 이용하여 핸드오프 지연을 최소화하는 QoS 향상기법을 제시한다. 또한 기존 핸드오프 방법과 제시한 기법을 모델링한 후 NS-2를 사용하여시뮬레이션 한다. 시뮬레이션 결과는 제시한 기법이 핸드오프 지연을 최소화시켜 QoS를 향상시켰음을 입증한다.

Mobile IP has been designed only to maintain communications as they move from place to place, so it doesn't guarantee Quality of Service (QoS). QoS in mobile IP is important to provide multimedia and real-time applications services in mobile environment, and it is closely related to handoff delay. Therefore, handoff delay problem is actively studied to guarantee QoS as a main issue in mobile IP research area. In this paper, we suggest SNMP Information-based routing that adds keyword management method to Information-based routing in active network in order to resolve such a problem, and then suggest QoS controlled handoff based on SNMP Information-based routing. After modeling of suggested method and existing handoff method, simulations are carried out with NS -2 for performance evaluation. The results of simulations show the some improvement on handoff delay, and therefore on QoS improvement.

키워드

참고문헌

  1. 고건영, 김종권, 'Mobile IP Improvement for Micro Mobility Support', 한국정보과학회, 추계학술발표, 2001
  2. Dan Chalmers, Morris sloman, 'A Survey of Quality of Service in Mobile Computing Environment,' IEEE Communication surveys, Second Quarter, 1999
  3. Stefan Schemid, Joe Finney, Andreq Scott, Doug Shepherd, 'Active Component Driven Network Handoff for Mobile Multimedia System,' Proceedings of the 7th International Workshop on Interactive Distributed Multimedia Systems and Telecommunications (IDMS), October, 2000
  4. D. L. Tennenhouse and J. M. Smith, W. D. Sincoskie, D. J. Wetherall, and G. J. Minden, 'A Survey of Active Network Research,' IEEE Communications Magazine, Vol.35, No.1, pp.80-86, January, 1997 https://doi.org/10.1109/35.568214
  5. D. Scott Alexander, Bob Braden, Carl A. Gunter, Alden W. Jackson, Angelos D. Keromytis, Gary J. Minden and David Wetherall, 'Active Network Encapsulation Protocol (ANEP),' RFC, ANEP documentation, April, 1997
  6. D. L.Tennehouse and D. J. Wetherall, 'Toward an active network architecture,' ACM Computer Communication Review, Vol.26, No.2, pp.5-18, 1996 https://doi.org/10.1145/231699.231701
  7. Amit B. Kulkarni and Gary J. Minden, 'Active Networking Services for Wired/Wifreless Networks,' INFOCOM '99, 1999 https://doi.org/10.1109/INFCOM.1999.751667
  8. http://www.ittc.ku.edu/~ananth/845.html, 'BeaconRouting in Active Network'
  9. Mark, A. Miller, PE, 'Inside Secrets SNMP Managing Internetworks', 삼각형프레스, 1998
  10. Yu Wang, Weidong Chen, Joseph S. M. Ho, 'Performance Analysis of Adaptive Location Management for Mobile IP,' Technical Report 97-CSE-13, Southern Methodist University, 1997
  11. Jorg Widmer, 'Network Simulations for A Mobile Network Architecture for Vehicles,' International Computer Science Institute Technical Report TR-00-009, May, 2000
  12. Lidia Yamamoto, 'Active Network in ns,' ns-users Mailing List, October, 1999
  13. Anil K., Gopinath, 'Implementing New Internet Services using an Active Network'