The transition to Renewable Energy and the global drive to decarbonization have introduced new challenges for electrical networks.
With the increase in wind and solar energy diffusion, which is based on power electronics rather than on rotating generators, many electrical networks are experiencing a reduction of inertia, voltage fluctuations and less power availability, resulting in widespread blackout and operational failures.
In microgrids and isolated networks, these instability can cause damage to equipment, system shutdowns and inefficient energy distribution.
SYNCMASTER® is a modular synchronous compensator that incorporates a rotating electric machine. It is designed specifically to address these challenges, providing dynamic support to voltage, network inertia and fault current capacity.
By continuously adjusting its output reactive power, SYNCMASTER® stabilizes voltage fluctuations, ensuring network resilience even in electrical ecosystems with a large amount of Renewable Energy.
With the increase in wind and solar energy diffusion, which is based on power electronics rather than on rotating generators, many electrical networks are experiencing a reduction of inertia, voltage fluctuations and less power availability, resulting in widespread blackout and operational failures.
In microgrids and isolated networks, these instability can cause damage to equipment, system shutdowns and inefficient energy distribution.
SYNCMASTER® is a modular synchronous compensator that incorporates a rotating electric machine. It is designed specifically to address these challenges, providing dynamic support to voltage, network inertia and fault current capacity.
By continuously adjusting its output reactive power, SYNCMASTER® stabilizes voltage fluctuations, ensuring network resilience even in electrical ecosystems with a large amount of Renewable Energy.
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