Design and Validation of a Modular Control Platform for a Voltage Source Inverter

HardwareX. 2022 Dec 29:13:e00390. doi: 10.1016/j.ohx.2022.e00390. eCollection 2023 Mar.

Abstract

Integrating renewable energies, such as wind or photovoltaic, requires an electronic power converter, the three-phase Voltage Source Inverter (VSI) the most common for such function. This paper presents a modular design of signal acquisition and control hardware (current and voltage) for the commercial SEMIKRON SKS35F VSI converter and a Texas Instruments TMS320F28335 DSP. Consequently, the proposed modular and open-source design allows its application in control systems of a VSI converter for isolated or grid-connected systems, applied to power generation based on renewable sources. The proposed scheme allows for a personalised design since it uses an open architecture to implement its own control algorithms that allow it to adapt to the application's particular needs, unlike closed-architecture commercial equipment. Detailed electronic printed circuit board designs for implementation are shown on paper. Finally, the experimental tests' results that validate the proposed design's correct functioning are presented.

Keywords: DC/AC converter; Grid-connected converters; Power electronics; Printed circuit board design; Renewable energy; Signal processor; Three-phase inverter.