基于ip的公路微蜂窝网络中快速终端的分布式移动性管理

T. Yamada, S. Yamashita, T. Okumura, P. T. Hoa
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引用次数: 0

摘要

本文提出了一种可扩展的统一微蜂窝网络MM-MAN(移动多媒体城域网)控制系统,该网络为快速终端提供高比特率的IP分组传输。在我们之前的论文中,提出的方案是LMC(逻辑宏单元)和并行轮询,以确保在频繁移动的情况下仍能顺利连接到快速移动的对象。LMC—由相邻微单元组成的多播组,从同一LMC的所有BSs发出轮询,创建一个对称的环境作为虚拟的单个单元,因此可以传递LMC内移动终端的单元到单元的移动。本文将详细描述用于移动性管理的分布式控制。引入了扩展的LMC来进行数据包的预下载,并允许分布式处理LMC切换。然而,由于并行轮询的开销,为了节省无线电资源,无线电活动信道只在LMC范围内的BSs进行操作,而在扩展LMC范围内不进行操作。如果轮询响应到达的是与LMC的中心蜂窝基站不同的基站,则该基站将被放置为新LMC的中心基站,轮询确认将被组播到新的扩展LMC。目标移动终端(MT)移动方向上的相邻BS可以实现MT的移动,并在没有集中控制的情况下自行启动加入新LMC的动作。这些程序可以隐藏终端从LMC出站时蜂窝到蜂窝移动的延迟,保证微蜂窝网络的可扩展性和高性能控制。仿真结果表明,在54 Mbps的无线接口上,切换延迟小于5 ms,在动态图像等连续多媒体情况下,MT的吞吐量为2 Mbps。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Distributed mobility management for fast terminals in an IP-based micro-cellular network along roads
This paper presents a scalable control system for a unified micro-cellular network named MM-MAN (mobile multimedia metropolitan area network) in which fast terminals are provided high-bit rate IP packet transfer. In our previous papers, proposed schemes to guarantee smooth connections to fast movers in spite of frequent movement are LMC (logical macro cell) and parallel polling. LMC-a multicast group of adjacent micro-cells and pollings are emitted from all BSs of the same LMC create a symmetric environment as a virtual single cell so the cell-to-cell movement of a mobile terminal within an LMC can be passed over. Detail of the distributed control for mobility management is described in this article. An extended LMC is introduced to conduct pre-downloading of packets and to allow distributed processing for the LMC switchover. However, the radio active channel is manipulated only at BSs in the LMC range but not in the extended LMC to save radio resources due to the overhead of parallel polling. If the polling response comes to the BS which differs from the central cellpsilas BS of the LMC, this BS will be placed to become the central cell of the new LMC, and polling acknowledgement is multicast to the new extended LMC. The neighboring BS on the movement direction of the target mobile terminal (MT) can realize movement of the MT, and starts actions to join the new LMC by itself without help from the centralized control. These procedures can hide the delay in the cell-to-cell movement of the terminal even when it goes out from the LMC, and guarantee scalable and high-performance control over micro-cellular network. The simulation results tells the handover latency is less than 5 ms, and the throughput for MT in case of the continuous multimedia like moving picture is 2 Mbps over the 54 Mbps wireless interface.
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