Design of Hybrid Controller for Voltage Profile Enhancement at Battery Energy Storage System Terminal of Solid State Transformer Based Charging of Electric Vehicles
Abstract
This paper presents a new design for charging electric vehicle .It incorporates the battery energy storage system. There is no need of converters between the electric vehicle and the battery energy storage system .Two battery strings were introduced for reliability’s sake and were separately charged by two solid state transformers .The proposed design has increased the efficiency compared to the conventional Low frequency transformer based .The paper discusses mathematical modelling of solid state transformers.The battery energy storage system reduced the peak demand on the grid . Fast electric vehicle charging stations reduce the maximum required grid connection power and avoid the upgrade of grid infrastructure by using the stationary battery energy storage system.The secound part of the paper discusses the integration of renewable energy sources and Battery energy storage systems to the Direct Current bus through a forward buck converter .They will cause voltage variations ,and similarly changes in load causes terminal voltage variations.So to keep voltage constant to 800 volts at terminals that supply power to electric vehicles , a novel design of line booster is implemented in the Forward converter along with controllers. Together they are named hybrid controllers .one is fuzzy control based and the other one is proportional plus integral control based and implemented in matlab/simulink to verify its performance.A comparision is made based on the hybrid controllers output voltage, In fact the fuzzy-based hybrid controller is the better one.It is simple and easy to design,where as proportional plus integral control needs tuning to get the output voltage .Both the hybrid controllers will control the switching device of the forward buck converter ,thereby controlling the output voltage to 800V.
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DOI (PDF): https://doi.org/10.20508/ijrer.v12i2.12915.g8502
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