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An Improved IEEE 802.15.4 Superframe Structure with Minimum Delay and Maximum CFP Link Utilization

机译:具有最小延迟和最大CFP链路利用率的改进的IEEE 802.15.4超帧结构

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An efficient superframe structure for 802.15.4 Medium Access Control (MAC) layer that operates over 868, 915 and 2400MHz, is proposed in this paper. In this superframe structure, Contention Free Period (CFP) precedes the Contention Access Period (CAP) and more number of slots are used in the same CFP period as of original 802.15.4 standard. As CFP precedes the CAP, the communication delay for the CFP traffic is exceptionally reduced. The Beacon frame is fine-tuned to achieve the above said superframe structure and makes it backward compatible with the original standard. Due to large number of small slots in CFP, more small amount of data requesting nodes can be assigned CFP space for communication. The analytical results show that our proposed superframe structure has nearly 50% less delay, accommodates almost double the number of CFP requesting nodes and has better link utilization compared to the original 802.15.4 standard for all three frequency bands.
机译:本文提出了一种高效的用于802.15.4媒体访问控制(MAC)层的超帧结构,该结构可在868、915和2400MHz上运行。在这种超帧结构中,无竞争周期(CFP)在竞争访问周期(CAP)之前,并且在与原始802.15.4标准相同的CFP周期中使用了更多数量的时隙。由于CFP在CAP之前,因此CFP流量的通信延迟会大大减少。信标帧经过微调以实现上述超帧结构,并使其与原始标准向后兼容。由于CFP中有大量小时隙,因此可以为CFP空间分配更多的数据请求节点进行通信。分析结果表明,与所有三个频段的原始802.15.4标准相比,我们提出的超帧结构的延迟减少了近50%,几乎容纳了CFP请求节点的数量,并且链路利用率更高。

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