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Duty Cycle Challenges of IEEE 802.11ah Networks in M2M and IoT Applications

机译:M2M和物联网应用中IEEE 802.11ah网络的占空比挑战

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The IEEE 802.11ah technology, targeting vast amount of use cases within the Internet of Things (IoT) and Machine-to-Machine (M2M) expansion, is currently being finalized. This IoT/M2M connectivity technology is deployed at the sub-1 GHz ISM bands, that are subject to various coexistence regulations set by the authorities. In Europe, devices in the Sub-1 GHz ISM bands must comply with the maximum duty cycle limit of 2.8%, provided that they also support Listen Before Talk (LBT) and Adaptive Frequency Agility (AFA) features. In this article we investigate the challenges of such duty cycle limitation and its effect on the IEEE 802.11ah network performance from the uplink transmission perspective, considering typical use cases characterized by different traffic models. We first derive the theoretical maximum duty cycles of both an individual station and an individual AP assuming full-buffer or saturated traffic. Then, with emphasis on more practical uses cases, such as home/building automation and healthcare, where the traffic of an individual station or node is strongly unsaturated, we analyze the IEEE 802.11ah network performance without and with the 2.8% maximum duty cycle limitation. The obtained results show IEEE 802.11ah networks can provide efficient support for the most important use cases such as sensor networking, home automation and healthcare, despite the maximum duty cycle limit of 2.8%. This shows that IEEE 802.11ah is one of the most prominent and scalable IoT/M2M connectivity technology, that can enable different types of IoT applications, even in the presence of the tight coexistence requirements at the ISM band.
机译:针对物联网(IoT)和机器对机器(M2M)扩展中大量用例的IEEE 802.11ah技术目前正在最终确定中。此IoT / M2M连接技术部署在低于1 GHz的ISM频段上,服从当局制定的各种共存规定。在欧洲,Sub-1 GHz ISM频段中的设备必须符合2.8%的最大占空比限制,前提是它们还支持先听后说(LBT)和自适应频率捷变(AFA)功能。在本文中,我们考虑了以不同流量模型为特征的典型用例,从上行链路传输的角度研究了这种占空比限制的挑战及其对IEEE 802.11ah网络性能的影响。我们首先推导出假设全缓冲区或饱和流量的单个站点和单个AP的理论最大占空比。然后,着重于更实际的使用案例,例如家庭/楼宇自动化和医疗保健,其中单个站点或节点的流量非常不饱和,我们分析了没有和有2.8%最大占空比限制的IEEE 802.11ah网络性能。 。获得的结果表明,尽管最大占空比限制为2.8%,IEEE 802.11ah网络仍可以为最重要的用例(例如传感器网络,家庭自动化和医疗保健)提供有效的支持。这表明IEEE 802.11ah是最杰出和可扩展的IoT / M2M连接技术之一,即使在ISM频段存在严格的共存要求的情况下,它也可以支持不同类型的IoT应用。

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