In order to solve the problem that the frequency stability of power system is threatened due to inertia and damping reduction. In this paper, an adaptive control strategy of virtual synchronous generator based on improved multi-objective particle swarm optimization algorithm with physical process is proposed. This method takes into account the static and dynamic performance of the system, and in the face of small disturbances, it can adjust the moment of inertia and damping in a planned way and reduce the search range of the moment of inertia, thereby reducing the frequency deviation and speeding up the end of the transition process
The high-level penetration of intermittent renewable power generation may limit power system inertia...
This paper introduces a new control strategy to realize a virtual synchronous generator. The propose...
As an interface between distributed power source and large power grid, microgrid has attracted more ...
As a large number of converters composed of power electronic devices are connected to the grid, powe...
As a large number of distributed energy sources merge into the micro-grid, power electronic inverter...
A large scale of renewable energy employing grid connected electronic inverters fail to contribute i...
A virtual synchronous generator (VSG) control based on adaptive virtual inertia is proposed to impro...
With the increasing penetration rate of distributed renewable energy in power systems, the control s...
The technology of virtual synchronous generator improves the limitations of inverter control strateg...
This paper presents a flexible virtual inertia and damping control strategy for a virtual synchronou...
With the massive integration of renewable energy into the grid, grid inertia and its stability conti...
Due to the lack of a physical rotating rotor, the photovoltaic generators (PVG) have no inertia. The...
The control strategy of virtual synchronous generator (VSG) is an effective and efficient technique ...
Renewable energy sources (RESs) are generally connected to the grid through power electronic interfa...
Different from the synchronization mechanism of synchronous generators, the non-synchronous generato...
The high-level penetration of intermittent renewable power generation may limit power system inertia...
This paper introduces a new control strategy to realize a virtual synchronous generator. The propose...
As an interface between distributed power source and large power grid, microgrid has attracted more ...
As a large number of converters composed of power electronic devices are connected to the grid, powe...
As a large number of distributed energy sources merge into the micro-grid, power electronic inverter...
A large scale of renewable energy employing grid connected electronic inverters fail to contribute i...
A virtual synchronous generator (VSG) control based on adaptive virtual inertia is proposed to impro...
With the increasing penetration rate of distributed renewable energy in power systems, the control s...
The technology of virtual synchronous generator improves the limitations of inverter control strateg...
This paper presents a flexible virtual inertia and damping control strategy for a virtual synchronou...
With the massive integration of renewable energy into the grid, grid inertia and its stability conti...
Due to the lack of a physical rotating rotor, the photovoltaic generators (PVG) have no inertia. The...
The control strategy of virtual synchronous generator (VSG) is an effective and efficient technique ...
Renewable energy sources (RESs) are generally connected to the grid through power electronic interfa...
Different from the synchronization mechanism of synchronous generators, the non-synchronous generato...
The high-level penetration of intermittent renewable power generation may limit power system inertia...
This paper introduces a new control strategy to realize a virtual synchronous generator. The propose...
As an interface between distributed power source and large power grid, microgrid has attracted more ...