Design, optimisation and application of a resonant DC link inverter for solar energy systems

Author:

Colak Ilhami,Demirtas Mehmet,Kabalci Ersan

Abstract

Purpose – The purpose of this paper is to examine diminish switching losses in a solar energy conversion system in order to utilise the full efficiency of a solar panel. Design/methodology/approach – In this paper, a boost converter and a resonant DC link (RDCL) inverter are controlled by a microcontroller. The maximum power point tracker (MPPT) algorithm implemented for boost converter supplies to track maximum power point of solar panel. The Class D full-bridge resonant inverter (RI) that is considered to be supplied by boost converter is modeled and zero voltage switching operation is performed by controlling the inverter with sinusoidal pulse width modulation (SPWM) control scheme. The control algorithm is managed with a feedback detecting the current of the boost converter and the zero voltage levels of capacitor voltage in the resonant circuit. Findings – There are several control techniques have been proposed to reduce switching losses and harmonic contents in conventional or RDCL inverters. Solar panels are used in low power applications among other renewable energy sources. By considering that the efficiency parameter of an actual solar panels is around 14∼17 per cent, the switching losses occurred in energy conversion systems causes the efficiency are reduced. Originality/value – The proposed approach has been decreased the switching power losses owing to resonant DC link inverter while the developed MPPT algorithm provides to generate maximum power. This paper introduces a novel soft switching technique in solar energy applications in order to maximise the possible efficiency.

Publisher

Emerald

Subject

Applied Mathematics,Electrical and Electronic Engineering,Computational Theory and Mathematics,Computer Science Applications

Reference23 articles.

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3. Colak, I. and Kabalci, E. (2010), “Increasing the efficiency of an inverter used in renewable energy sources”, 2nd International Conference on Nuclear and Renewable Energy Resources (NURER 2010), Ankara, pp. 853-859.

4. Demirtas, M. , Sefa, I. , Irmak, E. and Colak, I. (2008), “Microcontroller based DC/DC boost converter for solar energy systems”, Journal of the Faculty of Engineering and Architecture of Gazi University, Vol. 23 No. 3, pp. 719-728.

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