• Virtual Friction Control for Power System Oscillation Damping with VSC-HVDC Links 

      Rodriguez-Cabero, Alberto; Roldan-Pérez, Javier; Prodanovic, Milan; Suul, Jon Are Wold; D'Arco, Salvatore (Chapter; Peer reviewed, 2019)
      This paper presents a technique for damping of oscillations in ac grids by control of VSC-HVDC links. The effect of the proposed controller is equivalent to a mechanical friction between two asynchronous networks (modelled ...
    • Virtual Friction Control for Power System Oscillation Damping with VSC-HVDC Links 

      Rodriguez-Cabero, Alberto; Roldan-Pérez, Javier; Prodanovic, Milan; Suul, Jon Are Wold; D'Arco, Salvatore (Chapter; Peer reviewed, 2019)
      This paper presents a technique for damping of oscillations in ac grids by control of VSC-HVDC links. The effect of the proposed controller is equivalent to a mechanical friction between two asynchronous networks (modelled ...
    • Virtual Friction for Oscillation Damping and Inertia Sharing from Multi-Terminal VSC-HVDC Grids 

      Rodriguez-Cabero, Alberto; Roldan-Pérez, Javier; Prodanovic, Milan; Suul, Jon Are Wold; D'Arco, Salvatore (Chapter; Peer reviewed, 2020)
      This paper proposes a control scheme for multi-terminal HVDC (MTDC) interconnections that introduces an effect equivalent to a mechanical coupling between asynchronous ac networks providing damping of frequency oscillations ...
    • Virtual Synchronous Machine Control of VSC HVDC for Power System Oscillation Damping 

      Roldan-Pérez, Javier; Suul, Jon Are Wold; D'Arco, Salvatore; Rodriguez-Cabero, Alberto; Prodanovic, Milan (Chapter; Peer reviewed, 2018)
      Two different methods for implementing inertial damping on a Virtual Synchronous Machine (VSM) and their potential for attenuating power system oscillations when utilized in a VSC HVDC terminal are investigated in this ...