Joint optimization of TWT mechanism and scheduling for IEEE 802.11ax
Mehmet Karaca

TL;DR
This paper proposes a joint optimization algorithm for scheduling and TWT interval assignment in IEEE 802.11ax to enhance energy efficiency and throughput, outperforming random TWT assignment methods.
Contribution
It introduces a dynamic scheduling and TWT interval assignment algorithm based on traffic and channel conditions, analyzed via Lyapunov optimization.
Findings
Reduces overall network power consumption.
Supports higher traffic loads.
Achieves near-optimal performance.
Abstract
IEEE 802.11ax as the newest Wireless Local Area Networks (WLANS) standard brings enormous improvements in network throughput, coverage and energy efficiency in densely populated areas. Unlike previous IEEE 802.11 standards where power saving mechanisms have a limited capability and flexibility, 802.11ax comes with a different mechanism called Target Wake Time (TWT) where stations (STAs) wake up only after each TWT interval and different STAs can wake up at different time instance depending on their application requirements. As an example, for a periodic data arrival occurring in IoT applications, STA can wake up by following the data period and go to sleep mode for a much longer time, and STAs with high traffic volume can have shorter TWT interval to wake up more frequency. Moreover, as multi-user transmission capability is added to 802.11ax, multiple STAs can have the same TWT interval…
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Taxonomy
TopicsWireless Networks and Protocols · Advanced Wireless Network Optimization · Mobile Ad Hoc Networks
