• Conference Object  

      ABSense: Sensing Electromagnetic Waves on Metasurfaces via Ambient Compilation of Full Absorption 

      Liaskos, C.; Pirialakos, G.; Pitilakis, A.; Abadal, S.; Tsioliaridou, A.; Tasolamprou, A.; Tsilipakos, O.; Kantartzis, N.; Ioannidis, S.; Alarcon, E.; Cabellos, A.; Kafesaki, M.; Pitsillides, Andreas; Kossifos, K.; Georgiou, Julius; Akyildiz, I. F. (2019)
      Metasurfaces constitute effective media for manipulating and transforming impinging EM waves. Related studies have explored a series of impactful MS capabilities and applications in sectors such as wireless communications, ...
    • Conference Object  

      ABSense: Sensing Electromagnetic Waves on Metasurfaces via Ambient Compilation of Full Absorption 

      Liaskos, C.; Pirialakos, G.; Pitilakis, A.; Abadal, S.; Tsioliaridou, A.; Tasolamprou, A.; Tsilipakos, O.; Kantartzis, N.; Ioannidis, S.; Alarcon, E.; Cabellos, A.; Kafesaki, M.; Pitsillides, Andreas; Kossifos, K.; Georgiou, Julius; Akyildiz, I. F. (2019)
      Metasurfaces constitute effective media for manipulating and transforming impinging EM waves. Related studies have explored a series of impactful MS capabilities and applications in sectors such as wireless communications, ...
    • Conference Object  

      CelEc framework for reconfigurable small cells as part of 5G ultra-dense networks 

      Christophorou, C.; Pitsillides, Andreas; Akyildiz, I. F. (Institute of Electrical and Electronics Engineers Inc., 2017)
      This paper proposes the Cella Ecosystem (CelEc) concept for emerging 5G ultra dense Networks, to evolve and supplement the Mobile Radio Network by using the crowd's User Equipments (UEs), densely distributed in our physical ...
    • Article  

      Design and Development of Software Defined Metamaterials for Nanonetworks 

      Liaskos, Christos K.; Tsioliaridou, A.; Pitsillides, Andreas; Akyildiz, I. F.; Kantartzis, N. V.; Lalas, A. X.; Dimitropoulos, Xenofontas A.; Ioannidis, S.; Kafesaki, M.; Soukoulis, C. M. (2015)
      This paper introduces a class of programmable metamaterials, whose electromagnetic properties can be controlled via software. These software defined metamaterials (SDMs) stem from utilizing metamaterials in combination ...