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An efficient uplink scheduling mechanism with enabling Multi-device Transmission and Maximum Latency Fulfillment in IEEE 802.16j networks

机译:一种高效的上行链路调度机制,可在IEEE 802.16j网络中实现多设备传输和最大延迟实现

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IEEE 802.16j spreads out the coverage of the WiMAX network via extending the signal transmission by using the relay technology. To take the advantage of relaying in IEEE 802.16j network, an efficient schedule with quality of service (QoS) provision for multiple link transmissions is necessary, especially when link interference exists. In this paper, we propose an uplink scheduling mechanism with enabling Multi-device Transmission and Maximum Latency Fulfillment (MT-MLF). In the mechanism of MT-MLF, an interference detection mechanism is first carried out, then a resource distribution algorithm and a dynamic frame adjustment method are developed. Through the adoption of the proposed scheduler, both the uplink resource utilization and the requirement of real time applications can be better enhanced. Two simulation experiments were conducted with different levels of interference. The results demonstrate that under a fixed QoS type of connections, when the total number of connections goes up to 360 and 420 and the maximum latency violation rate approaches 20%, the average uplink transmission rate of MT-MLF can achieve 6.67Mbps and 7.92Mbps, which apparently outperform 4Mbps and 3.91Mbps as compared with regular relay scheduling schemes.
机译:IEEE 802.16j通过使用中继技术扩展信号传输来扩展WiMAX网络的覆盖范围。为了利用在IEEE 802.16j网络中进行中继的优势,特别是在存在链路干扰的情况下,有必要为多个链路传输提供具有服务质量(QoS)规定的有效调度。在本文中,我们提出了一种启用多设备传输和最大延迟实现(MT-MLF)的上行链路调度机制。在MT-MLF机制中,首先进行了干扰检测机制,然后开发了资源分配算法和动态帧调整方法。通过采用建议的调度器,可以更好地提高上行资源利用率和实时应用需求。进行了两个不同干扰水平的仿真实验。结果表明,在固定的QoS连接类型下,当连接总数达到360和420,并且最大延迟违反率接近20%时,MT-MLF的平均上行传输速率可以达到6.67Mbps和7.92Mbps ,与常规中继调度方案相比,其性能明显好于4Mbps和3.91Mbps。

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