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Hierarchical Control of HV-MTDC Systems With Droop-Based Primary and OPF-Based Secondary.

, , , , and . IEEE Trans. Smart Grid, 6 (3): 1502-1510 (2015)

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A Distributed Approach for OPF-Based Secondary Control of MTDC Systems., , , and . IEEE Trans. Smart Grid, 9 (4): 2843-2851 (2018)Beyond low-inertia systems: Massive integration of grid-forming power converters in transmission grids., , , , , , and . CoRR, (2019)Impacts of Virtual Primary Frequency Regulation on Electromechanical Oscillations., , , and . IEEE Trans. Smart Grid, 9 (5): 4270-4281 (2018)Current control design for three-phase grid-connected inverters using a pole placement technique based on numerical models., , , and . ISIE, page 2032-2035. IEEE, (2012)A simple approach for fast controller prototyping for a three phase interleaved DC-DC converter., , , and . ISIE, page 2015-2019. IEEE, (2012)Agent Based Distributed Control of Islanded Microgrid - Real-Time Cyber-Physical Implementation., , , , and . CoRR, (2017)Resonance analysis of a wind power plant with modal approach., , , and . ISIE, page 2042-2047. IEEE, (2012)Asynchronous Integration of Real-Time Simulators for HIL-based Validation of Smart Grids., , , , , and . IECON, page 6425-6431. IEEE, (2019)Hierarchical Control of HV-MTDC Systems With Droop-Based Primary and OPF-Based Secondary., , , , and . IEEE Trans. Smart Grid, 6 (3): 1502-1510 (2015)Comprehensive analogy between conventional AC grids and DC grids characteristics., , , , and . IECON, page 2004-2010. IEEE, (2013)