Design of an Enhanced Handover Algorithm Based on a New Adaptive SR-ARQ for Next-Generation Mobile Communication Networks

ManKyu Park, Y. Choi, Jae Yong Lee, Byungchul Kim, Daeyoung Kim, J. H. Kim
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Abstract

Next-generation mobile communication networks are supposed to provide various high capacity multimedia services to mobile users using various kinds of access networks. Among them, the WiNGS system developed by ETRI as one of 4G mobile system provides high performance RATs (Radio Access Technology) and network architecture with IP connectivity for merging them. In this paper, we propose a new link layer Selective-Repeat Automatic Repeat Request (SR-ARQ) mechanism that solves packet re-ordering problems during handovers and enhances handover performance in WiNGS system. In the proposed mechanism, we adopt an adaptive timer in the sending node in order to prevent unnecessary packet retransmission during handovers, and a delayed NAK scheme in the receiving node to prevent detection of temporal packet reordering due to handover delay. We implemented the proposed SR-ARQ mechanism in ns-2 simulator for performance evaluation. The simulation results show that the proposed SR-ARQ enhances handover performance for the WiNGS system by preventing unnecessary retransmission and reordering.
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基于新型自适应SR-ARQ的下一代移动通信网络增强切换算法设计
下一代移动通信网络要求通过各种接入网向移动用户提供各种高容量多媒体业务。其中,ETRI开发的WiNGS系统作为4G移动系统之一,提供了高性能的无线接入技术(rat)和具有IP连接的网络架构,可以将它们合并。本文提出了一种新的链路层选择性重复自动重复请求(SR-ARQ)机制,该机制解决了WiNGS系统在切换过程中的数据包重排序问题,提高了切换性能。在提出的机制中,我们在发送节点采用自适应定时器,以防止在切换过程中不必要的数据包重传;在接收节点采用延迟NAK方案,以防止由于切换延迟而检测到暂时的数据包重排序。我们在ns-2模拟器中实现了SR-ARQ机制,以进行性能评估。仿真结果表明,SR-ARQ通过防止不必要的重传和重排序,提高了WiNGS系统的切换性能。
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