End-to-end delay performance analysis in IEEE 802.16j Mobile Multi-hop Relay (MMR) networks

Yu Chen, I. Darwazeh
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引用次数: 10

Abstract

The IEEE 802.16 is a series of telecommunication standards that provides Broadband Wireless Access (BWA) services and has received great attention worldwide. The IEEE 802.16j emerged as a standard in the middle of 2009, specifying the procedure of supporting Mobile Multi-hop Relay (MMR) networks. The use of the “multi-hop” architectures not only requires a re-design of the functional implementations of both physical and link layers, because the topology in such networks is fundamentally different from that of single hop, but also necessitates further investigation of other “non-functional” properties, such as end-to-end packet delay performance, which is one of the Quality of Service (QoS) metrics and is considered to be critical for the future success of multi-hop network deployment. In this paper we report the development of a new Matlab/Simulink cross-layer simulation platform for integration on top of the IEEE 802.16 PHY standard model, and will use Effective Capacity (EC) multi-hop model [1] to evaluate and analyse the multi-hop end-to-end link-layer packet delay performance. We report simulation results for three-hop scenarios under different traffic load conditions and verify the efficacy of our newly developed model through comparisons to analytically derived models.
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IEEE 802.16j移动多跳中继(MMR)网络的端到端延迟性能分析
IEEE 802.16是提供宽带无线接入(BWA)服务的一系列电信标准,在世界范围内受到了广泛关注。IEEE 802.16j于2009年中期作为标准出现,指定了支持移动多跳中继(MMR)网络的过程。使用“多跳”架构不仅需要重新设计物理层和链路层的功能实现,因为这种网络的拓扑结构与单跳的拓扑结构根本不同,而且还需要进一步研究其他“非功能”属性,例如端到端数据包延迟性能,这是服务质量(QoS)指标之一,被认为是未来成功部署多跳网络的关键。在本文中,我们报告了一个新的Matlab/Simulink跨层仿真平台的开发,用于集成在IEEE 802.16 PHY标准模型之上,并将使用有效容量(EC)多跳模型[1]来评估和分析多跳端到端链路层数据包延迟性能。我们报告了不同流量负载条件下三跳场景的仿真结果,并通过与解析导出模型的比较验证了我们新开发的模型的有效性。
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