2014•Unpublished venueRequires access

Soft-switching boost converter with an auxiliary resonant circuit

Mumtaz Jabeen Bano, Farha Kowser

Open publisher page 2 citations

Abstract

AC supply is most commonly available at different line frequencies. The majority of the applications involving electronic circuitry such as those used in automotive applications and battery chargers need regulated DC supply. A suitable AC-DC converter is required for such applications. The switching power supply market is flourishing quickly in today's high-tech world. Design engineers are not all times supplied with the preferred amount of voltage they need, in order to make their design work Adding an additional voltage supply or a design is not always cost efficient. Boost converter is used for stepping up the DC voltage but there occurs switching losses. This paper presents soft-switching DC-DC converter using an auxiliary resonant circuit. The circuit consists of a general Boost converter with an additional auxiliary circuit. By using an auxiliary resonant circuit, switching losses of a boost converter is reduced. Generally boost converter circuits have snubber circuit where switching losses are dissipated in external passive resistors; this is known as hard switching. In the proposed topology the generation of switching losses is avoided by forcing voltage (ZVS) or current (ZCS) to zero for the duration of switching. The efficiency is enhanced due to decrease in switching losses. Simulations are performed in NI Multisim 12.0 software to verify the theoretical analysis.

About this research paper

What this paper is about

AC supply is most commonly available at different line frequencies. The majority of the applications involving electronic circuitry such as those used in automotive applications and battery chargers need regulated DC supply. A suitable AC-DC converter is required for such applications. The switching power supply market is flourishing quickly in today's high-tech world. Design engineers are not all times supplied with the preferred amount of voltage they need, in order to make their design work Adding an additional voltage supply or a design is not always cost efficient. Boost converter is used for stepping up the DC voltage but there occurs switching losses. This paper presents soft-switching DC-DC converter using an auxiliary resonant circuit. The circuit consists of a general Boost converter with an additional auxiliary circuit. By using an auxiliary resonant circuit, switching losses of a boost converter is reduced. Generally boost converter circuits have snubber circuit where switching losses are dissipated in external passive resistors; this is known as hard switching. In the proposed topology the generation of switching losses is avoided by forcing voltage (ZVS) or current (ZCS) to zero for the duration of switching. The efficiency is enhanced due to decrease in switching losses. Simulations are performed in NI Multisim 12.0 software to verify the theoretical analysis.

Why it matters

OpenAlex reports 2 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

AC supply is most commonly available at different line frequencies. The majority of the applications involving electronic circuitry such as those used in automotive applications and battery chargers need regulated DC supply. A suitable AC-DC converter is required for such applications. The switching power supply market is flourishing quickly in today's high-tech world. Design engineers are not all times supplied with the preferred amount of voltage they need, in order to make their design work Adding an additional voltage supply or a design is not always cost efficient. Boost converter is used for stepping up the DC voltage but there occurs switching losses. This paper presents soft-switching DC-DC converter using an auxiliary resonant circuit. The circuit consists of a general Boost converter with an additional auxiliary circuit. By using an auxiliary resonant circuit, switching losses of a boost converter is reduced. Generally boost converter circuits have snubber circuit where switching losses are dissipated in external passive resistors; this is known as hard switching. In the proposed topology the generation of switching losses is avoided by forcing voltage (ZVS) or current (ZCS) to zero for the duration of switching. The efficiency is enhanced due to decrease in switching losses. Simulations are performed in NI Multisim 12.0 software to verify the theoretical analysis.

Key concepts: Snubber, Boost converter, Electrical engineering, Electronic circuit, RLC circuit, Computer science, Voltage, Ćuk converter

Related papers

Back to paper searchBrowse research topicsOriginal source
Soft-switching boost converter with an auxiliary resonant circuit — Research Paper | ScholarLens