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Proceedings ArticleDOI

Soft switched low stress high efficient ZVT PWM DC-DC converter for renewable energy applications

TLDR
In this paper, a soft-switched low-stressed zero-voltage transition (ZVT) pulse width modulated (PWM) buck converter is proposed and its operation modes are identified and analyzed.
Abstract
With the growing global demand of green energy, the conversion of renewable energy sources into useful DC or AC power for residential and industrial applications is becoming more popular. To design and develop economic, high-efficient, compact and light weight power conversion systems is still a subject of research.Now-a-days, Power Electronic devices of smaller size are inevitable, which causes the switching frequency to jump from KHz to MHz range. The switching devices are made to turn on and turn off at high di/dt for the entire load current, and also to withstand high voltage stress across them. Due to these two effects, there occur increased power losses in the converters thus it reduces the efficiency significantly. In this paper a soft-switched low stress zero-voltage transition (ZVT) pulse width modulated (PWM) buck converter is proposed. Its operation modes are identified and analyzed. The developed converter can reduce the high voltage and high current stresses caused by the high input voltage across the resonant capacitor in the Zero Current Switching(ZCS) and Zero Voltage Switching (ZVS) converters. The proposed converter simulated in PSIM software and simulation results and waveforms for the proposed converter are presented. In addition, the proposed ZVT buck converter is compared with ZVS resonant buck-converter and the switching losses are compared under the same operating conditions and results are presented.

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Citations
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Proceedings ArticleDOI

Novel adaptive delta modulation controller for Interleaved Boost DC-DC converters

TL;DR: In this paper, the authors proposed an Interleaved Boost DC-DC converter suitable for renewable energy applications, which utilizes a novel adaptive delta modulation to control the pulse generator and achieves very vast response.
Proceedings ArticleDOI

Simplified Σ-Δ modulation controller for interleaved boost DC-DC converter suitable for renewable energy applications

TL;DR: In this paper, the authors proposed an interleaved boost DC-DC converter for renewable energy applications, which uses a simplified delta-sigma modulation to control the pulse generator.
Journal ArticleDOI

Interleaved Boost DC-DC Converter Using Delta-Sigma Modulation Suitable for Renewable Energy Applications

TL;DR: The output response obtained by the proposed Interleaved Boost DC- DC suitable for renewable energy applications is very much improved compared to the conventional PWM method of control.
Journal ArticleDOI

Design of Auxiliary Resonant Boost Converter for Flywheel based Photovoltaic Fed Microgrid

TL;DR: The resonant soft-switched resonant boost converter when compared with the other converters reported provides an improved performance hence very much suitable for solar photovoltaic application.
References
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Journal ArticleDOI

Resonant converter controlled by variable capacitance devices

TL;DR: In this paper, a variable capacitance device is proposed for output voltage regulation of resonant converters, which can be applied to the Schwarz circuit and buck-type current-resonant converter with a resonant switch.
Journal ArticleDOI

Invited paper. Resonant, quasi-resonant, multi-resonant and soft-switching techniques—merits and limitations

TL;DR: In this paper, the properties of the resonant, quasi-resonant, multiresonant and PWM soft-switching techniques are summarized and the merits and limitations of each technique are discussed and their most suitable application areas are defined.
Journal ArticleDOI

Novel design methodology and comparative analysis for ZVT PWM converters with resonant auxiliary circuit

TL;DR: In this paper, a similarity transformation is applied to the three-state-variable system in such a way that the whole system dynamics can be represented in a two-dimensional state space.
Journal ArticleDOI

Zero-Voltage-Transition Control for a Class of Resonant Converters

TL;DR: A variable pulsewidth control scheme is proposed that ensures soft-switching conditions and reduces conduction losses and has the feature of significant improvement of efficiency and wider voltage conversion ratio.
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