The neutral point clamped (NPC) three-level inverter is widely used in high-voltage and high-power applications. However, neutral point voltage oscillation (NPVO) and common-mode voltage (CMV) problems exist in the NPC three-level inverter. In this paper, an improved virtual space vector modulation (VSVM) is proposed based on the reconstruction of a virtual small vector and a virtual medium vector. Compared with the traditional VSVM, an improved VSVM can effectively reduce the CMV. On this basis, a vector conversion method is proposed to further reduce the NPVO in the whole range. Simulation results verify the effectiveness and superiority of the improved VSVM
This paper describes a high performance neutral point voltage balancing technique for a Neutral poin...
The Neutral Point Clamped (NPC) Multi-Level Inverters (MLI) have been ruling the power electronics i...
This work presents the comparative study of the different PWM techniques to reduce the common-mode v...
In the research field of multilevel converters, three-level NPC (neutral-point-clamped) converters, ...
The purpose of this paper is to provide a comprehensive Investigations and its control on the common...
A Neutral Point Clamped (NPC) type three-level inverter has the advantages of a low switch voltage a...
This study proposes a space vector modulation (SVM) strategy to balance the neutral-point voltage of...
The unbalance of the neutral point voltage is an inherent problem of three-level neutral-point-clamp...
Capacitor voltage imbalance is a significant problem for three-level inverters. Due to the mid-point...
This paper gives an idea to simulation of three-dimensional space vector modulation for neutral poin...
Three-level neutral-point diode-clamped (NPC) multi-level inverter has been known as a superior topo...
This paper presents a comparison between two Pulse Width Modulation (PWM) algorithms applied to a th...
Inverters are widely implemented in power system and electrical industry, such as renewable generati...
A modified virtual space vector modulation approach for the control of a Z-source neutral point clam...
The three-level neutral-point clamped voltage source inverter (3L-NPC-VSI) is widely used in the mag...
This paper describes a high performance neutral point voltage balancing technique for a Neutral poin...
The Neutral Point Clamped (NPC) Multi-Level Inverters (MLI) have been ruling the power electronics i...
This work presents the comparative study of the different PWM techniques to reduce the common-mode v...
In the research field of multilevel converters, three-level NPC (neutral-point-clamped) converters, ...
The purpose of this paper is to provide a comprehensive Investigations and its control on the common...
A Neutral Point Clamped (NPC) type three-level inverter has the advantages of a low switch voltage a...
This study proposes a space vector modulation (SVM) strategy to balance the neutral-point voltage of...
The unbalance of the neutral point voltage is an inherent problem of three-level neutral-point-clamp...
Capacitor voltage imbalance is a significant problem for three-level inverters. Due to the mid-point...
This paper gives an idea to simulation of three-dimensional space vector modulation for neutral poin...
Three-level neutral-point diode-clamped (NPC) multi-level inverter has been known as a superior topo...
This paper presents a comparison between two Pulse Width Modulation (PWM) algorithms applied to a th...
Inverters are widely implemented in power system and electrical industry, such as renewable generati...
A modified virtual space vector modulation approach for the control of a Z-source neutral point clam...
The three-level neutral-point clamped voltage source inverter (3L-NPC-VSI) is widely used in the mag...
This paper describes a high performance neutral point voltage balancing technique for a Neutral poin...
The Neutral Point Clamped (NPC) Multi-Level Inverters (MLI) have been ruling the power electronics i...
This work presents the comparative study of the different PWM techniques to reduce the common-mode v...