Development of Small Signal Model and Stability Analysis of PV-Grid Integration System for EV Charging Application
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Date
2024
Journal Title
Journal ISSN
Volume Title
Publisher
Institute of Electrical and Electronics Engineers Inc.
Abstract
In this article, grid interactive photovoltaic (PV) system is designed for an electric vehicle (EV) charging application, and the stability of the system is analyzed. The small signal model for the system is derived by averaging and linearizing the state space equations, and the condition for stable operation of PV-integrated charger system is identified from the transfer functions. The proposed charger system implements a coordinated control between the converters to maintain a power balance between the sources and load. System stability is examined using root-locus plots and in addition, the controller is designed to improve the overall stability and reliability of the system. The proposed method provides a general framework for modeling EV charging systems which also details the importance of deriving the model with multiple energy sources. Further, proposed topology has bidirectional capability, which transfers excess PV power to the grid during off-charging hours. The efficacy of the proposed method is verified using the MATLAB Simulink environment for the different scenarios, i.e., variation in the irradiation and disturbances in the grid voltage. The experimental study is conducted on a 1.5-kW laboratory prototype using a low-cost digital signal processing controller (launchpad TMS320F28027F) and the measured results authenticate the simulation findings. © 2020 IEEE.
Description
Keywords
Charging (batteries), Digital signal processing, Electric loads, Electric machine control, Electric power factor correction, Electric power system control, Electric power system stability, Electric vehicles, Heterojunction bipolar transistors, MATLAB, Power electronics, Power quality, Secondary batteries, Signal analysis, Timing circuits, Battery, Circuit stability, Electric vehicle charging, Electric vehicles chargers, Maximum Power Point Tracking, Photovoltaic systems, Power factor corrections, Power systems stability, Small signal model, Stability analyze, Controllers
Citation
IEEE Journal of Emerging and Selected Topics in Industrial Electronics, 2024, 5, 1, pp. 274-284
