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Performance evaluation of an adaptive semi-persistent LTE packet scheduler for M2M communications

机译:用于M2M通信的自适应半永久LTE分组调度程序的性能评估

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Large number of M2M devices are anticipated to be operating in future LTE networks which impose several system design challenges and wide range of service requirements. The LTE standard suffers from excess control channel overhead associated with radio resource allocation method for small, sporadic traffic per terminal which is often the nature of M2M communications. The rigid QoS support framework of LTE for limited number of voice and data services also fails to address the specific QoS requirements of M2M traffic classes. In this paper, we propose an adaptive LTE uplink scheduler which allocates radio resources to M2M traffic classes in either dynamic or adaptive semi-persistent manner based upon their traffic patterns and delay requirements. We also transform the concept of semi-persistent scheduling (SPS) implemented for VoIP scheduling in LTE to an adaptive SPS scheme which provides flexibility in allocated resource volume to accommodate changes in traffic dynamics. This new adaptation of SPS is particularly suitable for supporting random bursts of event-based M2M traffic yet has less control channel overhead than the dynamic scheduler. We demonstrate from simulation results that the proposed adaptive scheduler can maximize uplink data capacity by reducing dependency on downlink control channel as well as satisfy the QoS requirements of different M2M traffic classes compared to full dynamic and rigid SPS approaches.
机译:预计大量M2M设备将在未来的LTE网络中运行,这会带来一些系统设计挑战和广泛的服务要求。 LTE标准遭受与用于每个终端的小的,零星的业务的无线电资源分配方法相关联的过量的控制信道开销,这通常是M2M通信的本质。 LTE针对有限数量的语音和数据服务的严格QoS支持框架也无法满足M2M流量类别的特定QoS要求。在本文中,我们提出了一种自适应LTE上行调度器,该调度器根据其流量模式和时延要求以动态或自适应半永久方式将无线电资源分配给M2M流量类别。我们还将LTE中为VoIP调度实现的半永久调度(SPS)的概念转换为自适应SPS方案,该方案在分配的资源量方面提供了灵活性,以适应流量动态变化。 SPS的这一新改编特别适合于支持基于事件的M2M流量的随机突发,但与动态调度程序相比,它具有更少的控制信道开销。我们从仿真结果证明,与完全动态和刚性SPS方法相比,所提出的自适应调度器可以通过减少对下行链路控制信道的依赖性来最大化上行链路数据容量,并满足不同M2M业务类别的QoS要求。

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