点对多点WiMAX网络调度算法的性能研究

Pratik Dhrona, N. Abuali, H. Hassanein
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引用次数: 46

摘要

IEEE 802.16标准包括介质访问控制(MAC)和物理层(PHY)的规范,旨在处理具有不同QoS要求的不同当代应用程序的需求。IEEE 802.16标准配备了信令和带宽分配算法,可以在一个用户站(SS)上容纳具有各种QoS要求的许多连接。连接的带宽和延迟要求可能各不相同,因此一些研究人员提出了一个具有不同目标的IEEE 802.16调度器,以便在不同的流量模型范围内提供无线资源分配。本文对WiMAX点对多点模式下的调度算法进行了全面的性能研究。我们首先对WiMAX调度算法进行分类,然后在考虑到IEEE 802.16标准的特点的情况下,对每一类中具有代表性的算法进行模拟。我们根据算法支持多个服务类别的能力、提供服务质量(QoS)保证、服务类别之间的公平性和带宽利用率来评估算法。据我们所知,文献中还没有这样全面的性能研究报道。仿真结果表明,目前没有一种算法能够有效地支持所有类型的WiMAX业务。我们证明了高效、公平和健壮的WiMAX调度程序仍然是一个开放的研究领域。我们通过提出可供WiMax协议设计者使用的建议来结束我们的研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A performance study of scheduling algorithms in Point-to-Multipoint WiMAX networks
The IEEE 802.16 standard, which includes specification for the medium access control (MAC) and physical (PHY) layers, was designed to handle the requirements of different contemporary applications with diverse QoS requirements. IEEE 802.16 standard is equipped with signaling and bandwidth allocation algorithms that can accommodate many connections with a variety of QoS requirements at one subscriber station (SS). The connections may be varied in their bandwidth and latency requirements, so several researchers proposed an IEEE 802.16 schedulers with different objectives to provide for wireless resource allocations over a different range of traffic models. In this paper, we conduct a comprehensive performance study of scheduling algorithms in Point to multipoint mode of WiMAX. We first make a classification of WiMAX scheduling algorithms, then simulate a representative number of algorithms in each class taking into account the characteristics of the IEEE 802.16 standard. We evaluate the algorithms with respect to their abilities to support multiple classes of service, providing quality of service (QoS) guarantees, fairness amongst service classes and bandwidth utilization. To the best of our knowledge, no such comprehensive performance study has been reported in the literature. Simulation results indicate that none of the current algorithms is capable of effectively supporting all WiMAX classes of service. We demonstrate that an efficient, fair and robust scheduler for WiMAX is still an open research area. We conclude our study by making recommendations that can be used by WiMax protocol designers.
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