This paper proposes an Internal Model Principle (IMP) based Selective Harmonic Controller (SHC) for power converters. The proposed SHC offers an optimal control solution for power converters to mitigate power harmonics. It makes a good trade-off among cost, complexity and performance. It has high accuracy and fast transient response, and it is cost-effective, easy for real-time implementation, and compatible for design rules-of-thumb. An application on a three-phase PWM converter has confirmed the effectiveness of the proposed control scheme in terms of harmonic mitigation
In high-power applications, the maximum switching frequency is limited due to thermal losses. This l...
© 2016 IEEE. In this study, a model predictive control (MPC) strategy that combines finite-control-s...
Nowadays the H-bridge is one of the preferred solutions to connect DC loads or distributed sources t...
This paper proposes an Internal Model Principle (IMP) based optimal Selective Harmonic Controller (S...
This paper proposes an Internal Model Principle (IMP) based Selective Harmonic Controller (SHC) for ...
This paper proposes an Internal Model Principle (IMP) based optimal Selective Harmonic Controller (S...
In this paper, a Frequency Adaptive Selective Harmonic Control (FA-SHC) scheme is proposed. The FA-S...
This paper presents a fast selective harmonic current mitigation strategy for inverters with active ...
In modern high-power electrical drives, the efficiency of the system is a crucial constraint. Moreov...
Document Version Early version, also known as pre-print Link to publication from Aalborg University ...
Multilevel inverters controlled suffers from the issue of harmonic distortion in the output voltage...
Power converters have progressively become the most efficient and attractive solution in recent deca...
Electric motor-driven systems consume considerable amount of the global electricity. Majority of thr...
Generated harmonic current as a consequence of employing power electronics converter is known as an ...
Multilevel converters have received increased interest recently as a result of their ability to gen...
In high-power applications, the maximum switching frequency is limited due to thermal losses. This l...
© 2016 IEEE. In this study, a model predictive control (MPC) strategy that combines finite-control-s...
Nowadays the H-bridge is one of the preferred solutions to connect DC loads or distributed sources t...
This paper proposes an Internal Model Principle (IMP) based optimal Selective Harmonic Controller (S...
This paper proposes an Internal Model Principle (IMP) based Selective Harmonic Controller (SHC) for ...
This paper proposes an Internal Model Principle (IMP) based optimal Selective Harmonic Controller (S...
In this paper, a Frequency Adaptive Selective Harmonic Control (FA-SHC) scheme is proposed. The FA-S...
This paper presents a fast selective harmonic current mitigation strategy for inverters with active ...
In modern high-power electrical drives, the efficiency of the system is a crucial constraint. Moreov...
Document Version Early version, also known as pre-print Link to publication from Aalborg University ...
Multilevel inverters controlled suffers from the issue of harmonic distortion in the output voltage...
Power converters have progressively become the most efficient and attractive solution in recent deca...
Electric motor-driven systems consume considerable amount of the global electricity. Majority of thr...
Generated harmonic current as a consequence of employing power electronics converter is known as an ...
Multilevel converters have received increased interest recently as a result of their ability to gen...
In high-power applications, the maximum switching frequency is limited due to thermal losses. This l...
© 2016 IEEE. In this study, a model predictive control (MPC) strategy that combines finite-control-s...
Nowadays the H-bridge is one of the preferred solutions to connect DC loads or distributed sources t...