Stabilization of power system using improved virtual inertia of virtual synchronous generator

dc.contributor.authorAditap Poungdokmai
dc.contributor.authorSompob Polmai
dc.date.accessioned2026-05-08T19:19:51Z
dc.date.issued2022-11-29
dc.description.abstractThe renewable energy source (RES) based distributed generation (DG) has grown up rapidly that causing a reduction inertia and instability of power system. To support the increased RES, grid connected inverters require improved control schemes. Therefore, Virtual synchronous generator is getting attention. VSG is a control scheme applied for distributed generating (DG) that controls virtual rotational synchronous generator and enhances stability of power system. However, VSG has some issues when grid frequency fluctuations occur, which can cause the steady-state active power output deviation. It can be solved by analyzing closed loop transfer function of power output. The steady-state power deviation is caused by damping coefficient in the swing equation of the VSG. Thus, power deviation is decreased by set damping coefficients to zero and adding differential compensation to control dynamic characteristic instead of damping coefficients. By adding differential compensation, we can control dynamic characteristics without steady-state power output deviation in weak grid.
dc.identifier.doi10.1109/icems56177.2022.9983247
dc.identifier.urihttps://dspace.kmitl.ac.th/handle/123456789/17212
dc.publisher2022 25th International Conference on Electrical Machines and Systems (ICEMS)
dc.subjectMicrogrid Control and Optimization
dc.subjectIslanding Detection in Power Systems
dc.subjectPower Systems and Renewable Energy
dc.titleStabilization of power system using improved virtual inertia of virtual synchronous generator
dc.typeArticle

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