A harmonic injection technique, which reduces the kine frequency harmonics of the single switch three-phase boost rectifier, is implemented. In this method, a periodic voltage is injected in the control circuit to vary the duty cycle of the rectifier switch -within a line cycle so that the fifth-order harmonic of the input current is reduced to meet the total harmonic distortion (THD) requirement. Since the injected voltage signal, which is proportional to the inverted ac component of the rectified three-phase line-to-line input voltages is employed; the injected duty cycle variations are naturally synchronized with the threephase line-to-neutral input voltages
This paper presents a novel method of reducing harmonic currents at the point of common coupling (PC...
This paper studies a particular single-stage power-factor-correction (PFC) switching regulator emplo...
This paper presents a novel method of reducing harmonic currents at the point of common coupling (PC...
Abstract — This paper describes a new robust low-cost harmonic-injection method for single-switch th...
Bridge rectifier of three-phases is has widely applications in power systems. This rectifier consumm...
Line currents of three-phase diode bridge rectifier suffer from high THD. This THD is higher than IE...
The three-phase rectifier is becoming more common in power systems. This rectifier produces a non-li...
A single stage three-phase power factor correction circuit using a boost input current shaper has b...
Abstract—Three-phase controlled converters have many appli-cations especially in adjustable speed dr...
The quality of AC power is affected by the large number of nonlinear loads, particularly power conve...
Three-phase controlled converters have many applications especially in adjustable speed drives and r...
This paper demonstrates new circuit and concepts for three phase rectifier using harmonic current in...
In the recent era, improvement of technology has made electricity more on the demand throughout the ...
Rectifier circuits make a large number of higher harmonics in the mains and lower the power factor (...
This paper presents harmonic reduction due to mixing single-phase and three-phase rectifiers in low ...
This paper presents a novel method of reducing harmonic currents at the point of common coupling (PC...
This paper studies a particular single-stage power-factor-correction (PFC) switching regulator emplo...
This paper presents a novel method of reducing harmonic currents at the point of common coupling (PC...
Abstract — This paper describes a new robust low-cost harmonic-injection method for single-switch th...
Bridge rectifier of three-phases is has widely applications in power systems. This rectifier consumm...
Line currents of three-phase diode bridge rectifier suffer from high THD. This THD is higher than IE...
The three-phase rectifier is becoming more common in power systems. This rectifier produces a non-li...
A single stage three-phase power factor correction circuit using a boost input current shaper has b...
Abstract—Three-phase controlled converters have many appli-cations especially in adjustable speed dr...
The quality of AC power is affected by the large number of nonlinear loads, particularly power conve...
Three-phase controlled converters have many applications especially in adjustable speed drives and r...
This paper demonstrates new circuit and concepts for three phase rectifier using harmonic current in...
In the recent era, improvement of technology has made electricity more on the demand throughout the ...
Rectifier circuits make a large number of higher harmonics in the mains and lower the power factor (...
This paper presents harmonic reduction due to mixing single-phase and three-phase rectifiers in low ...
This paper presents a novel method of reducing harmonic currents at the point of common coupling (PC...
This paper studies a particular single-stage power-factor-correction (PFC) switching regulator emplo...
This paper presents a novel method of reducing harmonic currents at the point of common coupling (PC...