基于时间约束的多址链路最优分组分配

Jong-ok Kim, Toshiaki Yamamoto, A. Yamaguchi, S. Obana
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引用次数: 4

摘要

在下一代无线网络中,预计在单个无线终端内可同时使用多种异构无线接入技术。本文讨论了多址网络中链路聚合的挑战,其中一个关键问题是如何最优地聚合单个无线电链路提供的带宽。采用有效链路吞吐量模型作为异构链路的通用资源度量。在此基础上,提出了一种优化链路聚合的分组分配技术。数据包到无线接入链路的映射是为了最大限度地提高总体预期的系统吞吐量。增加了通话时间限制以实现相等的负载平衡。我们对两种情况进行了广泛的模拟。一种是WiMAX和WiFi共存,另一种是只包括WiFi链路。该方法对时变的链路资源进行自适应运算,获得了比固定分配比的WRR更好的聚合链路性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal Packet Allocation with Airtime Constraint for Multi-Access Links
In next generation wireless networks, a variety of heterogeneous radio access technologies are expected to be available simultaneously within a single wireless terminal. This paper addresses the challenge of link aggregation in multi-access networks, where a key issue is how to optimally aggregate bandwidth offered by the individual radio link. Effective link throughput model is employed as a common resource measure for heterogeneous links. Based on the model, we present a packet allocation technique to optimize link aggregation. The mapping of packets to radio access links is performed to maximize the overall expected system throughput. Airtime constraint is added for an equal load balance. We have conducted extensive simulations with two scenarios. One is at the co-existence of WiMAX and WiFi, and the other includes only WiFi links. The proposed technique adaptively operates to time-varying link resource, and achieves better the aggregated link performance than WRR with fixed distribution ratio.
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