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Wake-Up Latency Evaluation of IEEE 802.11ba WUR System

机译:IEEE 802.11ba WUR系统的唤醒延迟评估

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摘要

In this paper, we describe the coexistence technologies between legacy Wi-Fi and WUR Wi-Fi discussed in IEEE 802.11ba group, and perform a numerical evaluation of the wake-up latency considering the WUR signaling procedure and different load from co-existing legacy Wi-Fi devices. We consider two modes of operation for WUR capable devices, i.e. normal mode and duty cycle mode. The value of WUR ACK timeout does not critically affect the wake-up latency. Performance results also show that the duty cycle based operation mode is more preferable for low network load scenarios because it achieves similar delay performance with the normal mode, but requires less energy consumption. In contrast, the delay for duty cycle mode drastically increases with the load of co-existing legacy Wi-Fi network, but decreases more energy consumption.
机译:在本文中,我们描述了IEEE 802.11ba组中讨论的传统Wi-Fi和WUR Wi-Fi之间的共存技术,并考虑了WUR信令过程和与共存遗留物不同的负载,对唤醒延迟进行了数值评估。 Wi-Fi设备。我们考虑具有WUR功能的设备的两种工作模式,即正常模式和占空比模式。 WUR ACK超时的值不会严重影响唤醒延迟。性能结果还表明,基于占空比的操作模式在低网络负载情况下更为可取,因为它可以实现与普通模式相似的延迟性能,但所需的能耗更少。相反,占空比模式的延迟随着并存的传统Wi-Fi网络的负载而急剧增加,但降低了更多的能耗。

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