Simulator, scripts and result data for "Boundary Quantization in Coordinated Restricted TWT: Why Non-Overlapping Schedules Overlap, and What It Costs"

Published: 3 September 2026| Version 1 | DOI: 10.17632/hvy92hzt7d.1
Contributors:
Chien-Min Wu, Chia-Hung Cheng, Cheng-Wei Chen, Yi-Tian Ho, Chien-Yuan Tseng, Zi-Yi Yang

Description

This dataset contains the event-driven MAC-layer simulator, the experiment scripts, and the raw result files used in the accompanying article on boundary quantization in IEEE 802.11bn Coordinated Restricted Target Wake Time (Co-RTWT). The simulator models R-TWT service periods across multiple coordinating access points, with the schedule start time of a neighbouring BSS observed on a 1024 microsecond grid and subject to clock drift. It is validated against the Bianchi saturation model for the underlying EDCA behaviour and against a closed-form model of the expected own-SP loss. Contents include the simulator, the driver scripts for each experiment reported in the article, and the per-run CSV output from which every figure and table in the article is derived. A README maps each script and result file to the corresponding figure, table or numerical claim.This dataset contains the event-driven MAC-layer simulator, the experiment scripts, and the raw result files used in the accompanying article on boundary quantization in IEEE 802.11bn Coordinated Restricted Target Wake Time (Co-RTWT). The simulator models R-TWT service periods across multiple coordinating access points, with the schedule start time of a neighbouring BSS observed on a 1024 microsecond grid and subject to clock drift. It is validated against the Bianchi saturation model for the underlying EDCA behaviour and against a closed-form model of the expected own-SP loss. Contents include the simulator, the driver scripts for each eThis dataset contains the event-driven MAC-layer simulator, the experiment scripts, and the raw result files used in the accompanying article on boundary quantization in IEEE 802.11bn Coordinated Restricted Target Wake Time (Co-RTWT). The simulator models R-TWT service periods across multiple coordinating access points, with the schedule start time of a neighbouring BSS observed on a 1024 microsecond grid and subject to clock drift. It is validated against the Bianchi saturation model for the underlying EDCA behaviour and against a closed-form model of the expected own-SP loss. Contents include the simulator, the driver scripts for each experiment reported in the article, and the per-run CSV output from which every figure and table in the article is derived. A README maps each script and result file to the corresponding figure, table or numerical claim.xperiment reported in the article, and the per-run CSV output from which every figure and table in the article is derived. A README maps each script and result file to the corresponding figure, table or numerical claim.

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Computer Network, Wireless Communication, Medium Access Control Protocol

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