In single-phase uninterruptible power supply (UPS) applications, it is well known that the AC side instantaneous power is not constant by nature. The resulting input current from the DC source side will inevitably contain low frequency ripple components that may largely deteriorate the system performance in terms of efficiency and reliability. In order to solve this issue, this paper presents a dual-mode operated boost inverter, which can simultaneously work in both Differential Mode (DM) and Common Mode (CM) operations. Its DM operation ensures regulated sinusoidal AC output voltage as well as active power conversion, while its CM operation is controlled in such a way that the low frequency ripple current on the DC side can be maintained i...
Single-phase boost inverters have found numerous applications in UPS and AC motor drives. Most recen...
This paper presents investigations on current ripple in a dual 2-level inverter feeding an open-end ...
Single phase AC/DC converters have a pulsating power that flows from the ac line to the dc bus. As ...
Abstract—Boost dc–ac inverter naturally generates in a single stage an ac voltage whose peak value c...
The input current of single-phase inverter typically has an AC ripple component at twice the output ...
The well-known inherent second-order ripple power in single phase converters imposes harmonic stress...
The inherent double line ripple power in singlephase systems is adverse to the converter performance...
The electrical power industry has grown rapidly and loads are changing from simple, non-electronic l...
This paper presents an advanced Average Current-Mode Control (ACMC) technique for single phase AC-DC...
© 2017 IEEE. Single-phase two-stage inverters generally use an intermediate capacitor to buffer the ...
The second-harmonic power ripple in single-phase inverter may introduce the issue of low reliability...
In single phase DC-AC systems, double-line-frequency power ripple appears at the DC side inherently....
Differential inverters provide a cost-effective solution to the second-order ripple power issue in s...
This paper presents the analysis and design of a sliding-mode control of a boost converter operatin...
This paper proposes a new method to reduce the ripple current of the DC-link capacitor in a two-leve...
Single-phase boost inverters have found numerous applications in UPS and AC motor drives. Most recen...
This paper presents investigations on current ripple in a dual 2-level inverter feeding an open-end ...
Single phase AC/DC converters have a pulsating power that flows from the ac line to the dc bus. As ...
Abstract—Boost dc–ac inverter naturally generates in a single stage an ac voltage whose peak value c...
The input current of single-phase inverter typically has an AC ripple component at twice the output ...
The well-known inherent second-order ripple power in single phase converters imposes harmonic stress...
The inherent double line ripple power in singlephase systems is adverse to the converter performance...
The electrical power industry has grown rapidly and loads are changing from simple, non-electronic l...
This paper presents an advanced Average Current-Mode Control (ACMC) technique for single phase AC-DC...
© 2017 IEEE. Single-phase two-stage inverters generally use an intermediate capacitor to buffer the ...
The second-harmonic power ripple in single-phase inverter may introduce the issue of low reliability...
In single phase DC-AC systems, double-line-frequency power ripple appears at the DC side inherently....
Differential inverters provide a cost-effective solution to the second-order ripple power issue in s...
This paper presents the analysis and design of a sliding-mode control of a boost converter operatin...
This paper proposes a new method to reduce the ripple current of the DC-link capacitor in a two-leve...
Single-phase boost inverters have found numerous applications in UPS and AC motor drives. Most recen...
This paper presents investigations on current ripple in a dual 2-level inverter feeding an open-end ...
Single phase AC/DC converters have a pulsating power that flows from the ac line to the dc bus. As ...