Mobile CORBA 환경에서 게이트웨이간의 경로최적화 핸드오프

Route-optimized Handoff in Mobile CORBA Environment

  • 발행 : 2002.06.01

초록

본 논문에서는 ALICE(Architecture for Location Independent CORBA Environment) 구조에 기반한 Mobile CORBA 환경에서 이동 게이트웨이(MG)간의 핸드오프에 따른 문제점을 해결하기 위한 경로 최적화 핸드오프를 제안한다. 이동 호스트가 빠르게 움직이고, 처리시간이 긴 작업의 경우에 핸드오프로 인한 MG간의 긴 터널링 체인이 발생할 수 있고, 이로 인해 메시지들이 불필요한 몇 단계의 라우팅과 재전송 과정을 거치게 된다. 이렇게 비효율적인 경로를 통해서 메시지 전송이 이루어지는 것은 여러가지 제약조건을 가지는 무선망의 환경에서는 커다란 장애요소가 될 수 있다. 본 논문에서 제안한 새로운 핸드오프 알고리즘은 핸드오프시 관련된 MG들이 이동성에 관한 정보를 메시지(binding update message) 형태로 받아서 캐쉬로 관리하도록 한다. 그 결과 핸드오프 이후의 관련 MG는 캐쉬를 이용하여 이동 호스트와 최적의 경로로 통신이 가능하다.

The routing protocols designed for wired networks can hardly be used for mobile ad-hoc networks due to limited bandwidth of wireless transmission and unpredictable topological change. Recently, several routing protocols for mobile ad-hoc networks have been proposed. However, when these protocols are applied to support real time services like multimedia transmission, they still have problems in ad-hoe networks, where the topology changes drastically. In this paper, we propose a new route selection algorithm which selects the most reliable rouse that is impervious to route failures by topological changes by mobile hosts. For reliable route selection, the concept of virtual zone (stable lone and caution zone) is proposed. The lone is located in a mobile node's transmission range and determined by mobile node's mobility information received by Global Positioning System (GPS). The proposed algorithm is applied to the route discovery procedure of the existing on-demand routing protocol, AODV, and evaluated by simulation in various traffic conditions and mobility patterns.

키워드

참고문헌

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