The DSRR Organizing Algorithm for Efficient Mobility Management in the SIP

SIP에서의 효율적인 이동성 관리를 위한 방향성 사전등록영역 구성 알고리즘

  • Published : 2004.10.01

Abstract

In mobile/wireless environment, mobility management is widely being focused as one popular researches. But, disruption happens when messages are exchanged between nodes as registration is made after handoff, and unnecessary traffic occurs because of the use of the Random-walk model, in which the probability for MN to move to neighboring cells is equal. In order to solve these problems, this study proposes a technique and algorithm for composing Directional Shadow Registration Region (DSRR) that provides seamless mobility. The core of DSRR is to prevent disruption and unnecessary traffic by minimizing the number o) neighboring cells with a high probability of handoff (AAAF). This study sensed the optimal time for handoff through regional cell division by introducing a division scheme, and then decided DSRR, the region for shadow registration, by applying direction vector (DV) obtained through directional cell sectoring. According to the result of the experiment, the proposed DSRR processes message exchange between nodes within the intra-domain, the frequency of disruptions decreased significantly compared to that in previous researches that process in inter-domain environment. In addition, traffic that occurs at every handoff happened twice in DSRR compared to n (the number of neighboring cells) times in Previous researches. As an additional effect, divided regions obtained from the process of composing DSRR filter MN that moves regardless of handoff.

모바일/무선 환경하에서 이음새없는(seamless) 이동성 관리 문제는 많은 연구의 대상이 되고 있다. 그러나 핸드오프 이후에 등록을 함으로써 사용중 끊김이 발생하거나, MN가 인접한 셀로 이동할 확률이 같다는 Random Work 모델을 사용함으로써 불필요한 네트워크 트래픽을 발생시키는 문제들이 있었다. 본 논문에서는 이러한 문제를 해결하여 이음새없는 이동성을 제공하는 방향성 사전등록 영역(DSRR) 구성 기법과 알고리즘을 제안한다. DSRR의 핵심은 핸드오프할 확률이 높은 인접 셀(AAAF)을 최소한으로 구성하여 사전 등록을 수행함으로써 끊김과 불필요 트래픽 발생을 방지하는 것이다. 이를 위해 셀 분할 스킴을 도입하였다. 셀을 영역적으로 분할(Regional Cell Division)하여 핸드오프 시기를 감지하였으며, 셀의 방향성 분할(Directional Cell Sectoring)로 계산된 방향벡터(DV: Direction Vector)를 적용하여 MN의 이동방향을 반영하였다. 결과적으로 본 논문에서 제안한 DSRR은 노드간 메시지 교환이 인트라도메인 내에서 처리되므로 끊김은 인터도메인 환경에서 처리되는 기존 연구들에 비해 현저히 줄었으며, 또한 핸드오프마다 발생하는 트래픽은 인접한 셀의 개수(n)만큼 발생하던 기존 연구에 비해 DSRR에서는 2번으로 감소하였다.

Keywords

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