
We are looking for a talented Master's student to evaluate how new Wi-Fi 8 features (IEEE 802.11bn, “Ultra High Reliability”) perform in realistic deployments.
Published performance results for these features are primarily based on small, idealised topologies, often with two access points and a limited number of stations. Whether the reported gains remain valid in a real office building—with realistic walls, access point placement, channel reuse, interference, and hidden-node conditions—remains largely unanswered.
In this thesis, you will select one Wi-Fi 8 feature, implement it in a network simulation environment, and evaluate it using a digital twin of an office building. Possible features include Non-Primary Channel Access (NPCA), Multi-AP Coordination (Co-SR, Co-BF, Co-TDMA, and Co-RTWT), Dynamic Sub-band Operation (DSO), Dynamic Bandwidth Expansion (DBE), or coexistence with technologies such as Bluetooth.
The work will be carried out in close cooperation with the internal TWIST project and will contribute to ongoing standardisation and product development.
The following are considered a plus:

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