activity
20182024
most citedXR-RF Imaging Enabled by Software-Defined Metasurfaces and Machine Learning: Foundational Vision, Technologies and Challenges

29 citations · 65 across the 13 of their papers we have counts for

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6 papers · 1 filter

cs.ET2024

Engineering Yeast Cells to Facilitate Information Exchange

Nikolaos Ntetsikas, Styliana Kyriakoudi, Antonis Kirmizis +4

Although continuous advances in theoretical modelling of Molecular Communications (MC) are observed, there is still an insuperable gap between theory and experimental testbeds, esp…

cs.ET2020

Mobility-aware Beam Steering in Metasurface-based Programmable Wireless Environments

Christos Liaskos, Shuai Nie, Ageliki Tsioliaridou +3

Programmable wireless environments (PWEs) utilize electromagnetic metasurfaces to transform wireless propagation into a software-controlled resource. In this work we study the effe…

cs.ET2019

An Interpretable Neural Network for Configuring Programmable Wireless Environments

Christos Liaskos, Ageliki Tsioliaridou, Shuai Nie +3

Software-defined metasurfaces (SDMs) comprise a dense topology of basic elements called meta-atoms, exerting the highest degree of control over surface currents among intelligent p…

cs.ET2018

Fault Adaptive Routing in Metasurface Controller Networks

Taqwa Saeed, Constantinos Skitsas, Dimitrios Kouzapas +8

HyperSurfaces are a merge of structurally reconfigurable metasurfaces whose electromagnetic properties can be changed via a software interface, using an embedded miniaturized netwo…

cs.ET2018

Received Signal Strength for Randomly Distributed Molecular Nanonodes

Rafay Iqbal Ansari, Chrysostomos Chrysostomou, Taqwa Saeed +2

We consider nanonodes randomly distributed in a circular area and characterize the received signal strength when a pair of these nodes employ molecular communication. Two communica…

cs.ET201820 cited

A Novel Protocol for Network-Controlled Metasurfaces

Angeliki Tsioliaridou, Christos Liaskos, Andreas Pitsillides +1

A recently proposed class of materials, called software-defined metamaterials, can change their electromagnetic behavior on demand, utilizing a nanonetwork embedded in their struct…