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Survey of Dynamic Super-Frame Adjustment Schemes in Beacon-Enabled IEEE 802.15.4 Networks: An Application's Perspective

机译:启用信标的IEEE 802.15.4网络中动态超帧调整方案的调查:一种应用程序的观点

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摘要

IEEE 802.15.4 targets low data rate communication with limited power devices and cheap wireless networking solutions. In recent years both industry and academia are attracted to IEEE 802.15.4 because of its applicability in wireless sensor networks and wireless body area networks. An important feature of IEEE 802.15.4 is its very low duty cycle operation for conserving energy consumption of sensor device. Super-frame structure of IEEE 802.15.4 defines the duty cycle of nodes. The super-frame structure is based on two parameters: beacon order (BO) and super-frame order (SO). The performance of an IEEE 802.15.4 network depends on the values of BO and SO. These values depict the energy consumption, throughput, node discovery and latency of communication. IEEE 802.15.4 uses fixed BO and SO values which can be carefully chosen to meet the network requirements. In this paper, an extensive survey of dynamic super-frame adjustment algorithms is presented. The survey focuses on beacon-enabled star topology of IEEE 802.15.4 and studies the impact of aforementioned algorithms for various applications. Also, the survey categorizes common IEEE 802.15.4 applications based on their requirements for super-frame adjustment. A brief simulation analysis is included in this survey to highlight the impact of BO and SO on the network performance.
机译:IEEE 802.15.4旨在通过有限的功率设备和廉价的无线网络解决方案实现低数据速率通信。近年来,IEEE 802.15.4在无线传感器网络和无线人体局域网中的适用性吸引了业界和学术界。 IEEE 802.15.4的重要特征是其非常低的占空比操作,以节省传感器设备的能耗。 IEEE 802.15.4的超帧结构定义了节点的占空比。超帧结构基于两个参数:信标顺序(BO)和超帧顺序(SO)。 IEEE 802.15.4网络的性能取决于BO和SO的值。这些值描述了能耗,吞吐量,节点发现和通信延迟。 IEEE 802.15.4使用固定的BO和SO值,可以仔细选择它们以满足网络要求。在本文中,对动态超帧调整算法进行了广泛的研究。该调查重点关注IEEE 802.15.4的启用信标的星形拓扑,并研究了上述算法对各种应用的影响。此外,调查还根据通用IEEE 802.15.4应用对超帧调整的要求进行了分类。此调查中包含简短的仿真分析,以突出显示BO和SO对网络性能的影响。

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