This article presents a systematic control design procedure for an active front-end (AFE) converter connected to a power electronics embedded grid. A parametric model of the grid is first identified using the AFE itself to excite the system. This model is then integrated with the AFE one in order to obtain a global system representation. Subsequently, a globally optimized local controller is synthesized for the AFE keeping in consideration the interaction between the converter and the grid. The proposed method is finally tested experimentally, and its performance is compared with a traditional proportional– integral controller in a dq synchronous reference fram
Grid-connected converters with primary frequency control and inertia emulation have emerged and are ...
In this paper, an angular frequency dynamic-based control technique is proposed to control interface...
The Active Front End (AFE) is interconnected to the grid with an LCL filter to reduce the switching ...
The increasing use of power electronics systems and distributed generation in modern power networks ...
Power electronic converters and their control systems have played a significantly important role in ...
Application of power electronics in power distributed generation industry has been a fast evolving t...
The proliferation of power electronics systems and distributed generation in modern power networks h...
An active front end converter along with its associated control system has been the scope of this th...
The grid-forming control for power converters can be enhanced by proper feedforward terms included i...
Grid-forming converters interfacing renewable energy sources to the power system have emerged in rec...
A passivity-based non-linear controller design for three-phase front-end converters used to connect ...
© 2018 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for a...
The active and reactive power controllers of grid-forming converters are traditionally designed sepa...
[[abstract]]Insulated Gate Bipolar Transistor based active front-end converters are widely utilized ...
In this paper a unified control structure which would enable grid interfaced converters to inherentl...
Grid-connected converters with primary frequency control and inertia emulation have emerged and are ...
In this paper, an angular frequency dynamic-based control technique is proposed to control interface...
The Active Front End (AFE) is interconnected to the grid with an LCL filter to reduce the switching ...
The increasing use of power electronics systems and distributed generation in modern power networks ...
Power electronic converters and their control systems have played a significantly important role in ...
Application of power electronics in power distributed generation industry has been a fast evolving t...
The proliferation of power electronics systems and distributed generation in modern power networks h...
An active front end converter along with its associated control system has been the scope of this th...
The grid-forming control for power converters can be enhanced by proper feedforward terms included i...
Grid-forming converters interfacing renewable energy sources to the power system have emerged in rec...
A passivity-based non-linear controller design for three-phase front-end converters used to connect ...
© 2018 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for a...
The active and reactive power controllers of grid-forming converters are traditionally designed sepa...
[[abstract]]Insulated Gate Bipolar Transistor based active front-end converters are widely utilized ...
In this paper a unified control structure which would enable grid interfaced converters to inherentl...
Grid-connected converters with primary frequency control and inertia emulation have emerged and are ...
In this paper, an angular frequency dynamic-based control technique is proposed to control interface...
The Active Front End (AFE) is interconnected to the grid with an LCL filter to reduce the switching ...