Handover Scheme Considering for Signaling Time in Mobile Networks

무선 네트워크 망에서 시그널링 시간을 고려한 핸드오버 기법

  • Published : 2002.03.01

Abstract

In the wireless communication systems of the next generation, the hard handover may frequent]y occur between the existing 2G(2nd generation) and the 3(1(3rd generation). When it occurs between the 2G and the 3G, the call setup procedure will be added to MT(Mobile Terminal), the relay bases in 2G and 3G, and the switches. It causes total time to handle the hangover to increase. Therefore, the forced termination probability may be increased since relative time decreases. In this paper, we propose a method to decrease the forced termination. The method execute the handover procedure with speed and direction of the MT preestimated in the inner cell when MT enters the boundary cell.

Keywords

References

  1. Proceeding of IEEE INFORCOM An Inter-System handover Technique for the IMT-2000 System Janise Mcnair;Ian F.Akyildiz;Michael D. Bender
  2. IEEE Transactions on Vehicular Technolog Traffic Model and Performance Aalysis for Celluar Mobile Radio Telephon Systems with Prioritized and Nomprioritized handoff Procedures Daehyoung Hong;Stephen S. Rappaport
  3. 전자공학회지 v.25 no.10 IMT-2000 표준화 현황 김영기
  4. Proceeding of the IEEE Transactions on Vehicular Technolog Channel Management in Microcell/Macrocell Cellular Radio Systems Kwan L. Yeung;Sanjiv Nanda
  5. Universal Personal Communications v.2 Mobility models and biased sampling Problem Hai Xie;David J. Goodman
  6. IEEE Personal Communications v.4 no.4 Mobility modeling in third-generation mobile telecommunications systems John G. Markoulidakis;George L. Lyberopoulos;Dimitrios F. Tsirkas;Efstathios D. Sykas
  7. IEEE Transactions on Vehicular Technology v.47 no.4 UMTS universal mobile telecommunications system: Development of standard for the third generation A.Samukic
  8. IEEE Personal Communications v.4 Handover arrangement for a PCS network Anthomy Noerpel;YI-Bing
  9. ACM Wireless Networks v.6 no.3 Characterization of user mobility in low earth orbit mobile satellite systems Enrico Del Re;Romano Fantacci;Giovanni Giambene
  10. Queueing Systems L. Kleinrock