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Token Bucket Fair Scheduling Algorithm with Adaptive Rate Allocations for Heterogeneous Wireless Networks

机译:异构无线网络中具有自适应速率分配的令牌桶公平调度算法

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In this paper, we address the problem of uplink multi-traffic sources scheduling in heterogeneous wireless networks (HWNs) under real time traffics that requires fairness constraint and strict per-packet delay bounds and under non-real time traffics as well. The wide spread of HWNs, such as integrated of WiMax-WiFi-Relay wireless networks, enforces networks operators to design an efficient radio resource management (RRM) in order to tradeoff between network resource utilizations and user satisfactions. RRM concerns with traffic scheduling and admission control amongst different traffic sources to guarantee the Quality of Service. This paper participates to RRM developments by proposing and analyzing an efficient packet scheduling scheme with two modes of operations for the uplink channel of WiMax-WiFi-Relay station HWNs. These two modes of operations are known as Fixed Shared Flow and Adaptive Sharing Flow (ASF). The main aim of this scheduling is to allocate shared WiMax resources in a fair manner and to balance between maximizing the bandwidth utilization and users satisfactions. The performance bounds in terms of delay and throughout are presented. Then, the performance figures of the two modes of operations of the proposed scheduling scheme are compared. The results show that bounded delay can be provisioned for direct WiMax users, users via WiF and users via Relay Stations sharing the same WiMax bandwidth using both operations. Moreover, the simulation results show that the ASF scheduling scheme improves both system utilization and average delays.
机译:在本文中,我们解决了异构无线网络(HWN)中在实时流量下需要公平性约束和严格的每包延迟边界以及在非实时流量下的上行链路多业务源调度问题。 HWN的广泛传播,例如WiMax-WiFi-Relay无线网络的集成,迫使网络运营商设计有效的无线电资源管理(RRM),以便在网络资源利用率和用户满意度之间进行权衡。 RRM关注不同流量来源之间的流量调度和准入控制,以确保服务质量。本文通过提出和分析一种有效的分组调度方案来参与RRM的发展,该方案具有两种工作模式,用于WiMax-WiFi-中继站HWN的上行链路信道。这两种操作模式称为固定共享流和自适应共享流(ASF)。这种调度的主要目的是以公平的方式分配共享的WiMax资源,并在最大化带宽利用率和用户满意度之间取得平衡。给出了在延迟和整体方面的性能界限。然后,比较了所提出的调度方案的两种操作模式的性能指标。结果表明,可以为直接WiMax用户,通过WiF的用户和通过使用这两种操作共享相同WiMax带宽的中继站的用户提供有界延迟。此外,仿真结果表明,ASF调度方案可以提高系统利用率和平均延迟。

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