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Two-dimensional burst construction with QoS assurance for OFDMA mobile WiMAX system

机译:多维突发结构,具有QoS移动WiMAX系统的QoS保证

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IEEE 802.16 OFDMA systems have gained much attention for their ability to support high transmission rates and broadband services. For multiuser environments, IEEE 802.16 OFDMA systems require a resource allocation algorithm to use the limited downlink resource efficiently. One of the main problems to increase the resource utilization and throughput is how to construct two-dimensional blocks that realize time and frequency dimensions to multi-users. However, mapping a rectangular shape (i.e. two-dimensional burst) that not enough to utilize some flows in downlink frame, decreases total throughput and is crucial for Quality of Service (QoS) that support real-time applications. In this paper, we propose a low complexity algorithm called Best Edge Block Oriented (BEBO) which complies with 802.16 downlink burst characteristics with assurance of real time throughput. The proposed algorithm reduce the unserved slots by assembling bursts in the edge of the free spaces for reducing outdoor spaces from other bursts; and enlarge the internal burst size gradually to minimize the internal free spaces for a given request size with priority level and channel state information considerations. Simulation results show that the burst construction mechanism result is competitive.
机译:IEEE 802.16 OFDMA系统对支持高传输速率和宽带服务的能力进行了很多关注。对于多用户环境,IEEE 802.16 OFDMA系统需要资源分配算法,以有效地使用有限的下行链路资源。提高资源利用率和吞吐量的主要问题之一是如何构建实现到多用户的时间和频率维度的二维块。然而,映射矩形形状(即二维突发),不足以在下行链路帧中使用一些流量,这降低了总吞吐量,并且对于支持实时应用的服务质量(QoS)至关重要。在本文中,我们提出了一种低复杂性算法,称为最佳边缘块导向(BEBO),其符合802.16下行链路突发特征,并保证实时吞吐量。所提出的算法通过组装自由空间边缘的爆发来减少未安装的槽,以减少来自其他突发的室外空间;并逐渐扩大内部突发大小,以最小化具有优先级和信道状态信息注意率的给定请求大小的内部自由空间。仿真结果表明,突发施工机制结果具有竞争力。

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