The internal model principle based Repetitive Control (RC) offers an accurate control strategy for grid-tied power converters to feed sinusoidal current into the grid. However, in the presence of grid frequency variations, the conventional RC fails to produce high quality feeding current. This paper thus explores a frequency adaptive repetitive control strategy for grid converters, which employs fractional delay filters in order to adapt to the change of the grid frequency. Case studies with experimental results of a single-phase grid-connected PV inverter system are provided to verify the proposed controller
With the growth of electricity demand and renewable energy power source, power converter becomes a m...
Repetitive Control (RC) enables inverters to inject, at fundamental frequency, high quality sinusoid...
Repetitive Control (RC) enables inverters to inject, at fundamental frequency, high quality sinusoid...
The internal model principle based Repetitive Control (RC) offers an accurate control strategy for g...
The internal model principle based Repetitive Control (RC) offers an accurate control strategy for g...
Repetitive control offers an accurate current control scheme for grid-tied converters to feed high q...
Abstract—Grid-connected inverters (GCI) are widely used to feed power from renewable energy distribu...
Grid-connected inverters (GCI) are widely used to feed power from renewable energy distributed gene...
Grid-connected power converters should employ advanced current controllers, e.g., Proportional Reson...
This study is concerned with control of grid connected inverters using odd-harmonic repetitive schem...
It is mandatory for grid-connected power converters to synchronize the feed-in currents with the gri...
Grid-connected power converters should employ advanced current controllers, e.g., Proportional Reson...
Grid-connected power converters should employ advanced current controllers, e.g., Proportional Reson...
Repetitive Control (RC) has proven to be an effective and efficient way of tracking/rejecting perio...
With the growth of electricity demand and renewable energy power source, power converter becomes a m...
With the growth of electricity demand and renewable energy power source, power converter becomes a m...
Repetitive Control (RC) enables inverters to inject, at fundamental frequency, high quality sinusoid...
Repetitive Control (RC) enables inverters to inject, at fundamental frequency, high quality sinusoid...
The internal model principle based Repetitive Control (RC) offers an accurate control strategy for g...
The internal model principle based Repetitive Control (RC) offers an accurate control strategy for g...
Repetitive control offers an accurate current control scheme for grid-tied converters to feed high q...
Abstract—Grid-connected inverters (GCI) are widely used to feed power from renewable energy distribu...
Grid-connected inverters (GCI) are widely used to feed power from renewable energy distributed gene...
Grid-connected power converters should employ advanced current controllers, e.g., Proportional Reson...
This study is concerned with control of grid connected inverters using odd-harmonic repetitive schem...
It is mandatory for grid-connected power converters to synchronize the feed-in currents with the gri...
Grid-connected power converters should employ advanced current controllers, e.g., Proportional Reson...
Grid-connected power converters should employ advanced current controllers, e.g., Proportional Reson...
Repetitive Control (RC) has proven to be an effective and efficient way of tracking/rejecting perio...
With the growth of electricity demand and renewable energy power source, power converter becomes a m...
With the growth of electricity demand and renewable energy power source, power converter becomes a m...
Repetitive Control (RC) enables inverters to inject, at fundamental frequency, high quality sinusoid...
Repetitive Control (RC) enables inverters to inject, at fundamental frequency, high quality sinusoid...