In EV field, a design of proper compatible bidirectional converters is needed. In this work, a design of bidirectional DC-DC converter works in both forward and reverse direction. In case of EVs, where storage devices are used, buck/boost mode is used for charging/discharging based on storage requirement and intermittency of the source. This work specifically deals with PV array and bidirectional converters. The power voltage output of PV array can be boosted using a bidirectional converter working in boost mode. A high gain converter is interfaced with the designed PV array. Along with perturb and observe MPPT algorithm, the proposed circuit could yield a maximum power efficiency in various insolation conditions. This converter attains high gain with high efficiency in both the operations and can be used for EV charging. The simulation of all the designed circuits is done using MatLab/Simulink.

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Design and Simulation of Bidirectional Converter Suitable for EV Applications

  • R. Ramaprabha,
  • K. S. Harshavardan

摘要

In EV field, a design of proper compatible bidirectional converters is needed. In this work, a design of bidirectional DC-DC converter works in both forward and reverse direction. In case of EVs, where storage devices are used, buck/boost mode is used for charging/discharging based on storage requirement and intermittency of the source. This work specifically deals with PV array and bidirectional converters. The power voltage output of PV array can be boosted using a bidirectional converter working in boost mode. A high gain converter is interfaced with the designed PV array. Along with perturb and observe MPPT algorithm, the proposed circuit could yield a maximum power efficiency in various insolation conditions. This converter attains high gain with high efficiency in both the operations and can be used for EV charging. The simulation of all the designed circuits is done using MatLab/Simulink.