Design and control of an optimized battery charger for an xEV based on photovoltaic power systems

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Abstract

The continuous growth of electric vehicles has caused electric power shortages in conventional utilities owing to the charging of electric-vehicle batteries. In order to increase the capacity of these utilities, photovoltaic systems may be an appropriate solution because of their benefits. However, a large amount of loss is generated in a conventional charging structure using photovoltaic sources owing to the many power conversion processes. This paper describes a simple integrated battery charger that utilizes a PV generation system. Moreover, the system control algorithm is deduced by analyzing the operation modes in order to control the proposed integrated system. The proposed system and algorithm are verified by a 3.3-kW prototype, resulting in an increase in the efficiency of approximately 7% to 15% compared with the conventional system. And, to examine the feasibility of the proposed system, the simulation for multi-charger with various conditions are progressed.

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Kim, D. H., Cheo, G. Y., & Lee, B. K. (2014). Design and control of an optimized battery charger for an xEV based on photovoltaic power systems. Journal of Electrical Engineering and Technology, 9(5), 1602–1613. https://doi.org/10.5370/JEET.2014.9.5.1602

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