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Design and Performance Analysis of Mobility Management Schemes Based on Pointer Forwarding for Wireless Mesh Networks

机译:无线Mesh网络基于指针转发的移动性管理方案的设计与性能分析

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摘要

We propose efficient mobility management schemes based on pointer forwarding for wireless mesh networks (WMNs) with the objective to reduce the overall network traffic incurred by mobility management and packet delivery. The proposed schemes are per-user-based, i.e., the optimal threshold of the forwarding chain length that minimizes the overall network traffic is dynamically determined for each individual mobile user, based on the user's specific mobility and service patterns. We develop analytical models based on stochastic Petri nets to evaluate the performance of the proposed schemes. We demonstrate that there exists an optimal threshold of the forwarding chain length, given a set of parameters characterizing the specific mobility and service patterns of a mobile user. We also demonstrate that our schemes yield significantly better performance than schemes that apply a static threshold to all mobile users. A comparative analysis shows that our pointer forwarding schemes outperform routing-based mobility management protocols for WMNs, especially for mobile Internet applications characterized by large traffic asymmetry for which the downlink packet arrival rate is much higher than the uplink packet arrival rate.
机译:我们提出了基于指针转发的有效的移动性管理方案,用于无线网状网络(WMN),目的是减少移动性管理和数据包传递引起的总体网络流量。所提出的方案是基于每个用户的,即,基于用户的特定移动性和服务模式为每个单独的移动用户动态地确定使总网络流量最小化的转发链长度的最佳阈值。我们开发基于随机Petri网的分析模型,以评估所提出方案的性能。我们证明,给定一组表征移动用户特定移动性和服务模式的参数,存在转发链长度的最佳阈值。我们还证明,与向所有移动用户应用静态阈值的方案相比,我们的方案可产生更好的性能。对比分析表明,我们的指针转发方案优于WMN的基于路由的移动性管理协议,特别是对于那些具有较大流量不对称性(下行链路数据包到达率远高于上行链路数据包到达率)的移动Internet应用程序。

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